KR20120094135A - 아실-CoA 신세타제 호몰로그를 코딩하는 폴리뉴클레오타이드 및 그 용도 - Google Patents
아실-CoA 신세타제 호몰로그를 코딩하는 폴리뉴클레오타이드 및 그 용도 Download PDFInfo
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Abstract
본 발명은 모르티에렐라속 미생물의 아실-CoA 신세타제 호몰로그 단백질 및 이를 코딩하는 폴리뉴클레오타이드 등에 관한 것이다. 본 발명은, 예컨대, 모르티에렐라 알피나(Mortierella alpina)의 아실-CoA 신세타제 호몰로그 유전자를 함유하는 폴리뉴클레오타이드, 아실-CoA 신세타제 호몰로그 단백질을 코딩하는 폴리뉴클레오타이드, 이들 폴리뉴클레오타이드를 함유하는 발현 벡터 및 형질전환체, 상기 형질전환체를 이용하는 지질 또는 지방산의 제조 방법, 또는 그러한 제법에 의해 제조된 지질 또는 지방산을 함유하는 식품 등을 제공한다.
Description
본 발명은 아실-CoA 신세타제 호몰로그를 코딩하는 폴리뉴클레오타이드 및 그 이용 방법에 관한 것이다.
불포화 결합을 2개소 이상 함유하는 지방산은 고도 불포화 지방산(PUFA:polyunsaturated)이라고 총칭되며, 아라키돈산(ARA)이나 디호모 γ-리놀렌산(DGLA), 에이코사펜타엔산(EPA), 도코사헥사엔산(DHA) 등이 알려져 있다. 고도 불포화 지방산에는 동물체 내에서 합성할 수 없는 것도 존재한다. 따라서, 그러한 고도 불포화 지방산은 필수 지방산으로서 음식물로부터 섭취할 필요가 있다.
고도 불포화 지방산은 널리 분포되어 있으며, 예컨대, 아라키돈산은 동물의 부신선 및 간장에서 추출한 지질로부터 분리할 수 있다. 그러나, 동물 장기에 포함되는 고도 불포화 지방산은 소량이기 때문에 동물 장기부터의 분리 추출만으로는 충분한 공급을 얻을 수 없다. 따라서, 다양한 미생물을 배양함으로써 고도 불포화 지방산을 생산하는 방법이 개발되어 왔다. 그 중에서도 모르티에렐라(Mortierella)속 미생물은 아라키돈산 등의 고도 불포화 지방산 함유 지질을 생산하는 미생물로서 널리 알려져 있다.
또한, 식물체 내에서 고도 불포화 지방산을 생산하는 시도도 이루어지고 있다. 고도 불포화 지방산은 트리아실글리세롤 등의 저장 지질을 구성하며, 미생물의 균체 내 또는 식물 종자 중에 축적되는 것이 알려져 있다.
아실-CoA 신세타제(ACS)는 지방산과 코엔자임 A(CoA)를 티오에스테르화하는 효소로서, 이하의 반응을 촉매한다.
지방산 + CoASH + ATP → 아실 - CoA + AMP + PPi
ACS에 의해 생성되는 아실-CoA는 지질의 생합성이나 리모델링, β-산화에 의한 에너지 생산, 단백질의 아실화, 지방산에 의한 발현 조절 등을 포함하는 다양한 생명 현상에 관여하고 있다. 또한, ACS는 세포 밖으로부터의 지방산의 취입이나 세포 내의 지방산 수송 등에도 관여하는 것이 보고되고 있다(비특허문헌 1 및 2). 이상을 감안하면, 미생물이나 식물을 이용하여 고도 불포화 지방산 등을 생산하는 경우에는 ACS의 활성을 컨트롤하는 것이 중요하다고 생각된다.
모델 진핵 생물인 효모(Saccharomyces cerevisiae)에서는 6개의 아실-CoA 신세타제 유전자(ScFAA1, ScFAA2, ScFAA3, ScFAA4, ScFAT1, ScFAT2)가 알려져 있다(비특허문헌 1). 이들 유전자로 코딩되는 단백질은 기질 특이성, 발현 시기, 세포 내에서의 국재 및 기능에 있어서 서로 다르다.
특허문헌 1에는 스키조키트리움속(Schizochytrium sp.) 유래의 아실-CoA 신세타제 유전자(ScACS)로서 9개의 유전자가 기재되어 있다. 또한, 특허문헌 1에는 스키조키트리움속 PUFA 신세타제계를 코딩하는 유전자와 ScACS를 공발현시킨 경우 ScACS를 공발현시키지 않는 경우와 비교하여 DPA(n-6)(도코사펜타엔산(n-6))나 DHA의 생산이 증가한 것이 기재되어 있다.
그 밖에, 동물 및 식물 유래의 아실-CoA 신세타제 유전자에 대해서도 보고되고 있다(비특허문헌 2 및 특허문헌 2).
비특허문헌 1 : B. B. A. 1771, 286-298, 2007
비특허문헌 2 : Exp. Biol. Med., 233(5), 507-521, 2008
상기와 같은 상황 하에서 숙주 세포에 있어서 발현시켰을 때 상기 숙주 세포의 지방산의 생산량을 증가시키거나, 또는 생산되는 지방산의 조성을 변화시키는 새로운 유전자의 단리가 요구되고 있다.
본 발명자들은 예의 연구한 결과, 지질 생산균인 모르티에렐라 알피나(Mortierella alpina)(이하, "M. alpina")의 ACS 호몰로그(MaACS)를 코딩하는 유전자를 클로닝하는 것에 성공하여 본 발명을 완성시켰다. 즉, 본 발명은 이하의 폴리뉴클레오타이드, 단백질, 발현 벡터, 형질전환체, 상기 형질전환체를 이용하는 지질 또는 지방산 조성물 및 식품 등의 제조 방법 및 그러한 제법에 의해 제조된 식품 등을 제공한다.
즉, 본 발명은 이하와 같다.
[1] 이하의 (a) 내지 (e)로 이루어지는 군에서 선택되는 어느 하나에 기재된 폴리뉴클레오타이드:
(a) 서열 번호 1, 6, 11, 16, 21, 26, 31, 36, 41, 46, 51 및 56에 나타낸 염기 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열을 함유하는 폴리뉴클레오타이드;
(b) 서열 번호 2, 7, 12, 17, 22, 27, 32, 37, 42, 47, 52 및 57에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열로 이루어지는 단백질을 코딩하는 폴리뉴클레오타이드;
(c) 서열 번호 2, 7, 12, 17, 22, 27, 32, 37, 42, 47, 52 및 57에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 있어서, 1 내지 100개의 아미노산이 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드;
(d) 서열 번호 2, 7, 12, 17, 22, 27, 32, 37, 42, 47, 52 및 57에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 대해, 60% 이상의 동일성을 갖는 아미노산 서열을 갖는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드; 및
(e) 서열 번호 1, 6, 11, 16, 21, 26, 31, 36, 41, 46, 51 및 56에 나타낸 염기 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열과 상보적인 염기 서열로 이루어지는 폴리뉴클레오타이드와 스트린젠트한 조건 하에서 하이브리다이즈하는 폴리뉴클레오타이드로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드.
[2] 이하의 (f) 또는 (g) 중 어느 하나에 기재된 상기 [1]에 따른 폴리뉴클레오타이드:
(f) 서열 번호 2, 7, 12, 17, 22, 27, 32, 37, 42, 47, 52 및 57에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 있어서 1 내지 10개의 아미노산이 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드; 및
(g) 서열 번호 2, 7, 12, 17, 22, 27, 32, 37, 42, 47, 52 및 57에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 대해, 90% 이상의 동일성을 갖는 아미노산 서열을 갖는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드.
[3] 서열 번호 1, 6, 11, 16, 21, 26, 31, 36, 41, 46, 51 및 56에 나타낸 염기 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열을 함유하는 상기 [1]에 따른 폴리뉴클레오타이드.
[4] 서열 번호 2, 7, 12, 17, 22, 27, 32, 37, 42, 47, 52 및 57에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열로 이루어지는 단백질을 코딩하는 상기 [1]에 따른 폴리뉴클레오타이드.
[5] DNA인 상기 [1] 내지 [4] 중 어느 하나에 따른 폴리뉴클레오타이드.
[6] 상기 [1] 내지 [5] 중 어느 하나에 따른 폴리뉴클레오타이드로 코딩되는 단백질.
[7] 상기 [1] 내지 [5] 중 어느 하나에 따른 폴리뉴클레오타이드를 함유하는 벡터.
[8] 상기 [1] 내지 [5] 중 어느 하나에 따른 폴리뉴클레오타이드 또는 상기 [7]에 따른 벡터가 도입된 비인간 형질전환체.
[9] 상기 [8]에 따른 형질전환체의 배양물로부터 지질 또는 지방산 조성물을 채취하는 것을 특징으로 하는 지질 또는 지방산 조성물의 제조 방법.
[10] 상기 지질이 트리아실글리세롤인 상기 [9]에 따른 방법.
[11] 상기 지방산이 탄소수 18 이상의 고도 불포화 지방산인 상기 [9]에 따른 방법.
[12] 상기 [9]에 따른 제조 방법에 의해 채취된 지질 또는 지방산 조성물을 함유하는 식품, 의약품, 화장품 또는 비누.
본 발명의 폴리뉴클레오타이드는 적절한 숙주 세포의 형질전환에 이용할 수 있고, 그와 같이 하여 얻어지는 형질전환체는 지방산 조성물, 식품, 화장료, 의약, 비누 등의 제조에 이용할 수 있다.
보다 구체적으로는, 본 발명의 형질전환체는 지질 및 지방산의 생산 효율이 매우 높다. 따라서, 본 발명은 대량의 지질 또는 지방산을 필요로 하는 의약품 혹은 건강 식품의 제조에 유효하게 사용할 수 있다.
도 1은 MaACS-1의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 2a는 MaACS-1의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 2b는 도 2a의 계속을 도시한 도면이다.
도 3a는 MaACS-2의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 3b는 도 3A의 계속을 도시한 도면이다.
도 4a는 MaACS-2의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 4b는 도 4a의 계속을 도시한 도면이다.
도 4c는 도 4b의 계속을 도시한 도면이다.
도 5는 MaACS-3의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 6a는 MaACS-3의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 6b는 도 6a의 계속을 도시한 도면이다.
도 7a는 MaACS-4의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 7b는 도 7a의 계속을 도시한 도면이다.
도 8a는 MaACS-4의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 8b는 도 8a의 계속을 도시한 도면이다.
도 8c는 도 8b의 계속을 도시한 도면이다.
도 9a는 MaACS-5의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 9b는 도 9a의 계속을 도시한 도면이다.
도 10a는 MaACS-5의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 10b는 도 10a의 계속을 도시한 도면이다.
도 11a는 MaACS-6의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 11b는 도 11a의 계속을 도시한 도면이다.
도 12a는 MaACS-6의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 12b는 도 12a의 계속을 도시한 도면이다.
도 13은 MaACS-7의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 14a는 MaACS-7의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 14b는 도 14a의 계속을 도시한 도면이다.
도 15a는 MaACS-8의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 15b는 도 15a의 계속을 도시한 도면이다.
도 16a는 MaACS-8의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 16b는 도 16a의 계속을 도시한 도면이다.
도 16c는 도 16b의 계속을 도시한 도면이다.
도 17은 MaACS-9의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 18a는 MaACS-9의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 18b는 도 18a의 계속을 도시한 도면이다.
도 19a는 MaACS-10의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 19b는 도 19a의 계속을 도시한 도면이다.
도 20a는 MaACS-10의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 20b는 도 20a의 계속을 도시한 도면이다.
도 20c는 도 20b의 계속을 도시한 도면이다.
도 21a는 MaACS-11의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 21b는 도 21a의 계속을 도시한 도면이다.
도 22a는 MaACS-11의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 22b는 도 22a의 계속을 도시한 도면이다.
도 23a는 MaACS-12의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 23b는 도 23a의 계속을 도시한 도면이다.
도 24a는 MaACS-12의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 24b는 도 24a의 계속을 도시한 도면이다.
도 25a는 에스. 세레비시아(S. cerevisiae) 유래의 FAA 단백질(FAA: Fatty Acid Activation)과 비교적 높은 아미노산 서열의 상동성을 갖는 MaACS와 상기 FAA 단백질과의 얼라인먼트를 도시한 도면이다. 1중 밑줄 부분은 ATP-AMP 모티브를 나타내고, 이중 밑줄 부분은 FACS/VLACS-FATP 모티브를 나타낸다.
도 25b는 도 25a의 계속을 도시한 도면이다.
도 25c는 도 25b의 계속을 도시한 도면이다.
도 26a는 S. cerevisiae 유래의 FAT 단백질(FAT: Fatty Acid Transferase)과 비교적 높은 아미노산 서열의 상동성을 갖는 MaACS와 상기 FAT의 단백질과의 얼라인먼트를 도시한 도면이다. 1중 밑줄 부분은 ATP-AMP 모티브를 나타내고, 이중 밑줄 부분은 FACS/VLACS-FATP 모티브를 나타낸다.
도 26b는 도 26a의 계속을 도시한 도면이다.
도 27은 MaACS-10을 과잉 발현시킨 M. alpina에서의 균체 당 지질 생산량(도 27A)과 아라키돈산 생산량(도 27B)의 시간 경과에 따른 변화를 도시한 도면이다.
도 28은 MaACS-11을 과잉 발현시킨 M. alpina에서의 균체 당 지질 생산량(도 28A)과 아라키돈산 생산량(도 28B)의 시간 경과에 따른 변화를 도시한 도면이다.
도 2a는 MaACS-1의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 2b는 도 2a의 계속을 도시한 도면이다.
도 3a는 MaACS-2의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 3b는 도 3A의 계속을 도시한 도면이다.
도 4a는 MaACS-2의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 4b는 도 4a의 계속을 도시한 도면이다.
도 4c는 도 4b의 계속을 도시한 도면이다.
도 5는 MaACS-3의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 6a는 MaACS-3의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 6b는 도 6a의 계속을 도시한 도면이다.
도 7a는 MaACS-4의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 7b는 도 7a의 계속을 도시한 도면이다.
도 8a는 MaACS-4의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 8b는 도 8a의 계속을 도시한 도면이다.
도 8c는 도 8b의 계속을 도시한 도면이다.
도 9a는 MaACS-5의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 9b는 도 9a의 계속을 도시한 도면이다.
도 10a는 MaACS-5의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 10b는 도 10a의 계속을 도시한 도면이다.
도 11a는 MaACS-6의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 11b는 도 11a의 계속을 도시한 도면이다.
도 12a는 MaACS-6의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 12b는 도 12a의 계속을 도시한 도면이다.
도 13은 MaACS-7의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 14a는 MaACS-7의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 14b는 도 14a의 계속을 도시한 도면이다.
도 15a는 MaACS-8의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 15b는 도 15a의 계속을 도시한 도면이다.
도 16a는 MaACS-8의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 16b는 도 16a의 계속을 도시한 도면이다.
도 16c는 도 16b의 계속을 도시한 도면이다.
도 17은 MaACS-9의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 18a는 MaACS-9의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 18b는 도 18a의 계속을 도시한 도면이다.
도 19a는 MaACS-10의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 19b는 도 19a의 계속을 도시한 도면이다.
도 20a는 MaACS-10의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 20b는 도 20a의 계속을 도시한 도면이다.
도 20c는 도 20b의 계속을 도시한 도면이다.
도 21a는 MaACS-11의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 21b는 도 21a의 계속을 도시한 도면이다.
도 22a는 MaACS-11의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 22b는 도 22a의 계속을 도시한 도면이다.
도 23a는 MaACS-12의 cDNA 서열과 추정 아미노산 서열과의 대응을 도시한 도면이다.
도 23b는 도 23a의 계속을 도시한 도면이다.
도 24a는 MaACS-12의 게놈 서열과 CDS 서열의 얼라이먼트를 도시한 도면이다.
도 24b는 도 24a의 계속을 도시한 도면이다.
도 25a는 에스. 세레비시아(S. cerevisiae) 유래의 FAA 단백질(FAA: Fatty Acid Activation)과 비교적 높은 아미노산 서열의 상동성을 갖는 MaACS와 상기 FAA 단백질과의 얼라인먼트를 도시한 도면이다. 1중 밑줄 부분은 ATP-AMP 모티브를 나타내고, 이중 밑줄 부분은 FACS/VLACS-FATP 모티브를 나타낸다.
도 25b는 도 25a의 계속을 도시한 도면이다.
도 25c는 도 25b의 계속을 도시한 도면이다.
도 26a는 S. cerevisiae 유래의 FAT 단백질(FAT: Fatty Acid Transferase)과 비교적 높은 아미노산 서열의 상동성을 갖는 MaACS와 상기 FAT의 단백질과의 얼라인먼트를 도시한 도면이다. 1중 밑줄 부분은 ATP-AMP 모티브를 나타내고, 이중 밑줄 부분은 FACS/VLACS-FATP 모티브를 나타낸다.
도 26b는 도 26a의 계속을 도시한 도면이다.
도 27은 MaACS-10을 과잉 발현시킨 M. alpina에서의 균체 당 지질 생산량(도 27A)과 아라키돈산 생산량(도 27B)의 시간 경과에 따른 변화를 도시한 도면이다.
도 28은 MaACS-11을 과잉 발현시킨 M. alpina에서의 균체 당 지질 생산량(도 28A)과 아라키돈산 생산량(도 28B)의 시간 경과에 따른 변화를 도시한 도면이다.
이하, 본 발명을 상세하게 설명한다. 이하의 실시 형태는 본 발명을 설명하기 위한 예시로서, 본 발명을 본 실시 형태로만 한정하는 취지가 아니다. 본 발명은 그 요지를 벗어나지 않는 한 다양한 형태로 실시를 할 수 있다.
또한, 본 명세서에 있어서 인용한 모든 문헌 및 공개 공보, 특허 공보 그 밖의 특허문헌은 참조로서 본 명세서에 통합하는 것으로 한다. 또한, 본 명세서는 2010년 2월 1일에 출원된 본원 우선권 주장의 기초가 되는 일본 특허 출원(특원 2010-19967호)의 명세서 및 도면에 기재된 내용을 포함한다.
본 발명자들은 후술하는 실시예에 있어서 상세하게 기재하는 바와 같이, 지질 생산균인 M. alpina 유래의 ACS 호몰로그의 유전자(MaACS-1 내지 12)의 전체 길이 cDNA의 클로닝에 처음으로 성공했다. 또한, 본 발명자들은 M. alpina 유래의 MaACS-1 내지 12의 게놈 DNA의 염기 서열 및 추정 아미노산 서열도 동정했다. MaACS 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11 및 12의 ORF 서열, 추정 아미노산 서열, CDS 서열, cDNA 서열 및 게놈 서열은 각각 서열 번호 1, 6, 11, 16, 21, 26, 31, 36, 41, 46, 51 및 56(이하, 이들 서열을 통합하여 "MaACS-1 내지 12의 ORF 서열"이라고 함), 서열 번호 2, 7, 12, 17, 22, 27, 32, 37, 42, 47, 52 및 57(이하, 이들 서열을 통합하여 "MaACS-1 내지 12의 아미노산 서열"이라고 함), 서열 번호 3, 8, 13, 18, 23, 28, 33, 38, 43, 48, 53 및 58(이하, 이들 서열을 통합하여 "MaACS-1 내지 12의 CDS 서열"이라고 함), 서열 번호 4, 9, 14, 19, 24, 29, 34, 39, 44, 49, 54 및 59(이하, 이들 서열을 통합하여 "MaACS-1 내지 12의 cDNA 서열"이라고 함) 및 서열 번호 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55 및 60(이하, 이들 서열을 통합하여 "MaACS-1 내지 12의 게놈 서열"이라고 함)이다. 이들 폴리뉴클레오타이드 및 단백질은 후술하는 실시예에 기재한 방법, 공지의 유전자 공학적 방법, 공지의 합성 방법 등에 의해 취득하는 것이 가능하다.
1. 본 발명의
폴리뉴클레오타이드
먼저, 본 발명은, 이하의 (a) 내지 (g)로 이루어지는 군에서 선택되는 어느 하나에 기재된 폴리뉴클레오타이드를 제공한다:
(a) MaACS-1 내지 12의 ORF 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열을 함유하는 폴리뉴클레오타이드;
(b) MaACS-1 내지 12의 cDNA 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열을 함유하는 폴리뉴클레오타이드;
(c) MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열로 이루어지는 단백질을 코딩하는 폴리뉴클레오타이드;
(d) MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택된 어느 하나의 아미노산 서열에 있어서, 1 내지 100개의 아미노산이 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드;
(e) MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 대해 60% 이상의 동일성을 갖는 아미노산 서열을 갖는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드;
(f) MaACS-1 내지 12의 ORF 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열과 상보적인 염기 서열로 이루어지는 폴리뉴클레오타이드와 스트린젠트한 조건 하에서 하이브리다이즈하는 폴리뉴클레오타이드로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드; 및
(g) MaACS-1 내지 12의 cDNA 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열과 상보적인 염기 서열로 이루어지는 폴리뉴클레오타이드와 스트린젠트한 조건 하에서 하이브리다이즈하는 폴리뉴클레오타이드로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드.
본 명세서에 있어서, "폴리뉴클레오타이드"란 DNA 또는 RNA를 의미한다.
본 명세서에 있어서, "스트린젠트한 조건 하에서 하이브리다이즈하는 폴리뉴클레오타이드"란 예컨대 MaACS-1 내지 12의 ORF 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열 또는 MaACS-1 내지 12의 cDNA 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열과 상보적인 염기 서열로 이루어지는 폴리뉴클레오타이드, 또는 MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열을 코딩하는 염기 서열로 이루어지는 폴리뉴클레오타이드의 전부 또는 일부를 프로브로 하여, 콜로니 하이브리다이제이션법, 플라크 하이브리다이제이션법 또는 서던 하이브리다이제이션법 등을 이용함으로써 얻어지는 폴리뉴클레오타이드를 말한다. 하이브리다이제이션의 방법으로는, 예컨대, "Sambrook & Russell, Molecular Cloning: A Laboratory Manual Vol. 3, Cold Spring Harbor, Laboratory Press 2001" 및 "Ausubel, Current Protocols in Molecular Biology, John Wiley & Sons 1987-1997" 등에 기재되어 있는 방법을 이용할 수 있다.
본 명세서에 있어서, "스트린젠트한 조건"이란 저스트린젠트한 조건, 중스트린젠트한 조건 및 고스트린젠트한 조건의 어느 것일 수도 있다. "저스트린젠트한 조건"은, 예컨대, 5×SSC, 5×덴하르트 용액, 0.5% SDS, 50% 포름아미드, 32℃의 조건이다. 또한, "중스트린젠트한 조건"은, 예컨대, 5×SSC, 5×덴하르트 용액, 0.5% SDS, 50% 포름아미드, 42℃ 또는 5×SSC, 1% SDS, 50 mM Tris-HCl(pH 7.5), 50% 포름아미드, 42℃의 조건이다. "고스트린젠트한 조건"은, 예컨대, 5×SSC, 5×덴하르트 용액, 0.5% SDS, 50% 포름아미드, 50℃ 또는 0.2×SSC, 0.1% SDS, 65℃의 조건이다. 이들 조건에 있어서, 온도를 올릴수록 높은 동일성을 갖는 DNA가 효율적으로 얻어지는 것을 기대할 수 있다. 단, 하이브리다이제이션의 스트린젠시에 영향을 미치는 요소로는 온도, 프로브 농도, 프로브의 길이, 이온 강도, 시간, 염 농도 등의 복수 개의 요소를 생각할 수 있으며, 당업자라면 이들 요소를 적당히 선택함으로써 동일한 스트린젠시를 구현하는 것이 가능하다.
또한, 하이브리다이제이션에 시판 키트를 사용하는 경우에는, 예컨대 Alkphos Direct Labelling and Detection System(GE Healthcare)를 이용할 수 있다. 이 경우에는, 키트에 첨부된 프로토콜에 따라 표지한 프로브와의 인큐베이션을 하룻밤 수행한 후, 멤브레인을 55℃의 조건 하에서 0.1%(w/v) SDS를 포함하는 일차 세정 버퍼로 세정한 후, 하이브리다이즈한 DNA를 검출할 수 있다. 혹은, MaACS-1 내지 12의 ORF 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열 또는 MaACS-1 내지 12의 cDNA 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열과 상보적인 염기 서열, 또는 MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열을 코딩하는 염기 서열의 전부 또는 일부에 기초하여 프로브를 제작할 때, 시판하는 시약(예컨대, PCR 라벨링 믹스(Roche Diagnostics) 등)을 이용하여 상기 프로브를 디곡시제닌(DIG) 라벨한 경우에는, DIG 핵산 검출 키트(Roche Diagnostics)를 이용하여 하이브리다이제이션을 검출할 수 있다.
상기 이외에 하이브리다이즈 가능한 폴리뉴클레오타이드로는, FASTA, BLAST 등의 상동성 검색 소프트웨어에 의해 디폴트의 파라미터를 이용하여 계산했을 때, MaACS-1 내지 12의 ORF 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열 또는 MaACS-1 내지 12의 cDNA 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열의 DNA, 또는 MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열을 코딩하는 DNA와 50% 이상, 51% 이상, 52% 이상, 53% 이상, 54% 이상, 55% 이상, 56% 이상, 57% 이상, 58% 이상, 59% 이상, 60% 이상, 61% 이상, 62% 이상, 63% 이상, 64% 이상, 65% 이상, 66% 이상, 67% 이상, 68% 이상, 69% 이상, 70% 이상, 71% 이상, 72% 이상, 73% 이상, 74% 이상, 75% 이상, 76% 이상, 77% 이상, 78% 이상, 79% 이상, 80% 이상, 81% 이상, 82% 이상, 83% 이상, 84% 이상, 85% 이상, 86% 이상, 87% 이상, 88% 이상, 89% 이상, 90% 이상, 91% 이상, 92% 이상, 93% 이상, 94% 이상, 95% 이상, 96% 이상, 97% 이상, 98% 이상, 99% 이상, 99.1% 이상, 99.2% 이상, 99.3% 이상, 99.4% 이상, 99.5% 이상, 99.6% 이상, 99.7% 이상, 99.8% 이상 또는 99.9% 이상의 동일성을 갖는 DNA를 들 수 있다.
또한, 아미노산 서열이나 염기 서열의 동일성은 FASTA(Science 227 (4693): 1435-1441, (1985))나 칼린 및 아서에 의한 알고리즘 BLAST(Basic Local Alignment Search Tool)(Proc. Natl. Acad. Sci. USA 872264-2268, 1990; Proc Natl Acad Sci USA 90: 5873, 1993)를 이용하여 결정할 수 있다. BLAST의 알고리즘에 기초한 blastn, blastx, blastp, tblastn이나 tblastx라고 불리는 프로그램이 개발된 바 있다(Altschul SF, et al: J Mol Biol 215: 403, 1990). blastn을 이용하여 염기 서열을 해석하는 경우에는, 파라미터는, 예컨대 score=100, wordlength=12로 한다. 또한, blastp를 이용하여 아미노산 서열을 해석하는 경우에는, 파라미터는, 예컨대 score=50, wordlength=3으로 한다. BLAST와 Gapped BLAST 프로그램을 이용하는 경우에는, 각 프로그램의 디폴트 파라미터를 이용한다.
상기한 본 발명의 폴리뉴클레오타이드는 공지의 유전자 공학적 방법 또는 공지의 합성 방법에 의해 취득하는 것이 가능하다.
2. 본 발명의 단백질
본 발명은 다음에 나타낸 단백질을 제공한다.
(i) 상기 (a) 내지 (g) 중 어느 하나의 폴리뉴클레오타이드로 코딩되는 단백질.
(ii) MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열을 포함하는 단백질.
(iii) MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 있어서 하나 또는 복수 개의 아미노산이 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질.
(iv) MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 대해 90% 이상의 동일성을 갖는 아미노산 서열을 갖는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질.
상기 (iii) 또는 (iv)에 기재된 단백질은, 대표적으로는 천연에 존재하는 MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열로 이루어지는 단백질의 이변체인데, 예컨대, "Sambrook & Russell, Molecular Cloning: A Laboratory Manual Vol. 3, Cold Spring Harbor Laboratory Press 2001", "Ausubel, Current Protocols in Molecular Biology, John Wiley & Sons 1987-1997", "Nuc. Acids. Res., 10, 6487(1982)", "Proc. Natl. Acad. Sci. USA, 79, 6409(1982)", "Gene, 34, 315(1985)", "Nuc. Acids. Res., 13, 4431(1985)", "Proc. Natl. Acad. Sci. USA, 82, 488(1985)" 등에 기재된 부위 특이적 이변 도입법을 이용하여 인위적으로 취득할 수 있는 것도 포함된다.
본 명세서에 있어서, "MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 있어서 하나 또는 복수 개의 아미노산이, 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질"로는, MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 있어서, 예컨대, 1 내지 100개, 1 내지 90개, 1 내지 80개, 1 내지 70개, 1 내지 60개, 1 내지 50개, 1 내지 40개, 1 내지 39개, 1 내지 38개, 1 내지 37개, 1 내지 36개, 1 내지 35개, 1 내지 34개, 1 내지 33개, 1 내지 32개, 1 내지 31개, 1 내지 30개, 1 내지 29개, 1 내지 28개, 1 내지 27개, 1 내지 26개, 1 내지 25개, 1 내지 24개, 1 내지 23개, 1 내지 22개, 1 내지 21개, 1 내지 20개, 1 내지 19개, 1 내지 18개, 1 내지 17개, 1 내지 16개, 1 내지 15개, 1 내지 14개, 1 내지 13개, 1 내지 12개, 1 내지 11개, 1 내지 10개, 1 내지 9개(1 내지 수개), 1 내지 8개, 1 내지 7개, 1 내지 6개, 1 내지 5개, 1 내지 4개, 1 내지 3개, 1 내지 2개 또는 1개의 아미노산 잔기가 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질을 들 수 있다. 상기 아미노산 잔기의 결실, 치환, 삽입 및/또는 부가의 수는 일반적으로는 작을수록 바람직하다.
또한, 이러한 단백질로는 MaACS-1 내지 12의 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열과 60% 이상, 61% 이상, 62% 이상, 63% 이상, 64% 이상, 65% 이상, 66% 이상, 67% 이상, 68% 이상, 69% 이상, 70% 이상, 71% 이상, 72% 이상, 73% 이상, 74% 이상, 75% 이상, 76% 이상, 77% 이상, 78% 이상, 79% 이상, 80% 이상, 81% 이상, 82% 이상, 83% 이상, 84% 이상, 85% 이상, 86% 이상, 87% 이상, 88% 이상, 89% 이상, 90% 이상, 91% 이상, 92% 이상, 93% 이상, 94% 이상, 95% 이상, 96% 이상, 97% 이상, 98% 이상, 99% 이상, 99.1% 이상, 99.2% 이상, 99.3% 이상, 99.4% 이상, 99.5% 이상, 99.6% 이상, 99.7% 이상, 99.8% 이상 또는 99.9% 이상의 동일성을 갖는 아미노산 서열을 가지며, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 및/또는 조성을 변화시키는 활성을 갖는 단백질을 들 수 있다. 상기 동일성의 수치는 일반적으로 클수록 바람직하다.
본 발명의 단백질의 아미노산 서열에 있어서 하나 또는 복수 개의 아미노산 잔기가 결실, 치환, 삽입 및/또는 부가되었다란, 동일 서열 중의 임의의 하나 또는 복수 개의 아미노산 서열 중의 위치에 있어서, 하나 또는 복수 개의 아미노산 잔기의 결실, 치환, 삽입 및/또는 부가가 있는 것을 의미하여, 결실, 치환, 삽입 및 부가 중 2종 이상이 동시에 발생할 수도 있다.
이하, 서로 치환 가능한 아미노산 잔기의 예를 나타낸다. 동일 군에 포함되는 아미노산 잔기는 서로 치환 가능하다. A 군: 로이신, 이소로이신, 노르로이신, 발린, 노르발린, 알라닌, 2-아미노부탄산, 메티오닌, o-메틸세린, t-부틸글리신, t-부틸알라닌, 시클로헥실알라닌; B군: 아스파라긴산, 글루타민산, 이소아스파라긴산, 이소글루타민산, 2-아미노아디프산, 2-아미노수베린산; C군: 아스파라긴, 글루타민; D군: 리신, 아르기닌, 오르니틴, 2,4-디아미노부탄산, 2, 3-디아미노프로피온산; E군: 프롤린, 3-히드록시프롤린, 4-히드록시프롤린; F군: 세린, 트레오닌, 호모세린; G군: 페닐알라닌, 티로신.
또한, 본 발명의 단백질은 Fmoc법(플루오레닐메틸옥시카르보닐법), tBoc법(t-부틸옥시카르보닐법) 등의 화학 합성법에 의해서도 제조할 수 있다. 또한, Advanced Automation Peptide Protein Technologies사 제조, Perkin Elmer사 제조, Protein Technologies사 제조, PerSeptive사 제조, Applied Biosystems사 제조, SHIMADZU사 제조 등의 펩타이드 합성기를 이용하여 화학 합성할 수도 있다.
본 발명의 폴리뉴클레오타이드로 코딩되는 단백질 또는 본 발명의 단백질은 모두 ACS의 호몰로그 단백질로서, 아실-CoA 신세타제 활성에 중요한 ATP-AMP 모티브 및 FACS/VLACS-FATP 모티브가 보존되어 있기 때문에 아실-CoA 신세타제 활성을 갖는 것이라고 생각된다. 여기서, ATP, AMP, FACS, VLACS 및 FATP는 각각 아데노신 트리포스페이트(Adenosine Triphosphate), 아데노신 모노포스페이트(Adenosine Monophosphate), 지방 아실 CoA 신세타제(Fatty Acyl CoA Synthetase), 매우 장쇄의 아실-CoA 신세타제(Very Long Chain Acyl-CoA Synthetase) 및 지방산 수송 단백질(Fatty Acid Transport Protein)을 의미한다. 본 발명의 단백질에 포함되는 ATP-AMP 모티브 및 FACS/VLACS-FATP 모티브의 구체적인 아미노 서열은 도 25 및 도 26의 각각 1중 밑줄 부분 및 2중 밑줄 부분에 표시되어 있다. ATP-AMP 모티브 및 FACS/VLACS-FATP 모티브의 대표적인 아미노 서열에 대해서는 pfam(http://pfam.sanger.ac.uk/) 등의 데이터베이스에서 참조할 수 있다.
여기서, "아실-CoA 신세타제 활성(ACS 활성)"은 지방산과 코엔자임 A와의 사이에 티오에스테르 결합을 발생시키며, 아실-CoA를 생성하는 반응(하기의 화학 반응식)을 촉진하는 활성을 의미한다.
지방산 + 코엔자임 A → 아실-CoA + H2O
아실-CoA 신세타제 활성은, 예컨대, 본 발명의 폴리펩타이드를 도입한 숙주 세포를 일정 기간 배양한 후에 상기 숙주 세포의 세포 용해물을 조제하고, 상기 세포 용해물과 표지한 지방산(예컨대, 방사성 동위체로 표지한 고도 불포화 지방산 등)과 코엔자임 A를 혼합하여 일정 시간 반응시키고, 그 후 n-헵탄으로 유리 지방산을 추출하여 제거하고, 수층에 포함되는 상기 반응에 의해 생긴 지방산-CoA의 양을 신틸레이션 계수기에 의해 방사능 레벨로서 측정함으로써 정량적으로 확인할 수 있다. 아실-CoA 신세타제 활성의 확인 방법의 상세한 내용에 대해서는 Black PN et al.(J.B.C., 272(8), 4896-4903, 1997)을 참조할 수 있다. 혹은, 본원 실시예 2의 "ACS 활성의 평가"에 기재되는 바와 같이 방사성 라벨을 사용하지 않는 방법에 의해 아실-CoA 신세타제 활성을 측정하는 것도 가능하다.
"숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성"이란 본 발명의 폴리뉴클레오타이드 또는 본 발명의 단백질을 코딩하는 폴리뉴클레오타이드를 숙주 세포 내에 도입(형질전환)하여 상기 숙주 세포 내에서 발현시킨 경우에, 상기 숙주 세포와 동일주 유래이며, 상기 폴리뉴클레오타이드를 도입하지 않은 대조 세포(컨트롤)와 비교하여 지방산의 총 생산량을 증가시키는 활성을 의미한다.
또한, "숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 조성을 변화시키는 활성"이란 본 발명의 폴리뉴클레오타이드 또는 본 발명의 단백질을 코딩하는 폴리뉴클레오타이드를 숙주 세포 내에 도입(형질전환)하여 상기 숙주 세포 내에서 발현시킨 경우에, 상기 숙주 세포와 동일주 유래이며, 상기 폴리뉴클레오타이드를 도입하지 않은 대조 세포(컨트롤)와 비교하여 세포에 의해 생산되는 각종 지방산의 양 또는 비율을 변화시키는 활성을 의미한다.
본 명세서에 있어서, "지방산"이란 일반식 RCOOH(R은 알킬기)로 표시되는 지방족 모노카르복실산(카르복실기를 한 개 가지며, 탄소 원자가 쇄형으로 연결된 카르복실산)을 말한다. 지방산에는 탄화수소 쇄 중에 이중 결합을 갖지 않는 포화 지방산과 이중 결합을 포함하는 불포화 지방산이 포함된다. 바람직하게는, 지방산은 불포화 지방산이며, 더욱 바람직하게는, 탄화수소 쇄 중에 복수 개의 이중 결합을 포함하는 고도 불포화 지방산이다. 또한, 고도 불포화 지방산의 바람직한 예로는, 탄소수 18 이상의 불포화 지방산, 예컨대, 탄소수 18 또는 20의 불포화 지방산이며, 그 예로는 올레인산, 리놀레산, 리놀렌산(γ-리놀렌산 및 디호모 γ-리놀렌산 등), 아라키돈산 등을 들 수 있는데, 이들에 한정되지 않는다. 특히 바람직하게는, 고도 불포화 지방산은 리놀레산, γ-리놀렌산, 디호모 γ-리놀렌산 및 아라키돈산이고, 보다 바람직하게는, 리놀레산, 디호모 γ-리놀렌산 및 아라키돈산이며, 가장 바람직하게는, 디호모 γ-리놀렌산 및 아라키돈산이다.
본 발명에 있어서, "숙주 세포"란 본 발명의 폴리뉴클레오타이드를 도입했을 때 상기 폴리뉴클레오타이드를 발현할 수 있는 세포라면 특별히 한정되지 않는다. 이러한 세포에는 포유 동물(인간을 제외함), 곤충, 식물, 진균, 세균 등에서 유래되는 세포가 포함되며, 바람직하게는, 식물 및 진균에서 유래되는 세포이고, 특히 바람직하게는 진균에서 유래되는 세포이다. 특히 지질 생산균 또는 효모가 바람직하다.
지질 생산균의 예로는 MYCOTAXON, Vol. XLIV, No. 2, pp. 257-265(1992)에 기재되어 있는 지질 생산균을 들 수 있는데, 이에 한정되지 않는다. 구체적인 예로는, 모르티에렐라속에 속하는 미생물을 들 수 있다. 모르티에렐라속에 속하는 미생물의 구체적인 예로는, 모르티에렐라 엘롱가타(Mortierella elongata) IFO8570, 모르티에렐라 엑시구아(Mortierella exigua) IFO8571, 모르티에렐라 하이그로필라(Mortierella hygrophila) IFO5941, 모르티에렐라 알피나(Mortierella alpina) IFO8568, ATCC16266, ATCC32221, ATCC42430, CBS 219.35, CBS224.37, CBS250.53, CBS343.66, CBS527.72, CBS528.72, CBS529.72, CBS608.70, CBS754.68 등의 모르티에렐라아속(subgenus Mortierella)에 속하는 미생물 또는 모르티에렐라 이자벨리나(Mortierella isabellina) CBS194.28, IFO6336, IFO7824, IFO7873, IFO7874, IFO8286, IFO8308, IFO7884, 모르티에렐라 나나(Mortierella nana) IFO8190, 모르티에렐라 라마니아나(Mortierella ramanniana) IFO5426, IFO8186, CBS112.08, CBS212.72, IFO7825, IFO8184, IFO8185, IFO8287, 모르티에렐라 비나세아(Mortierella vinacea) CBS236.82 등의 마이크로뮤코 아속(subgenus Micromucor)에 속하는 미생물 등을 들 수 있다. 특히, 모르티에렐라 알피나(Mortierella alpina)가 바람직하다.
효모의 구체적인 예로는 사카로마이세스속(Saccharomyces), 칸디다속(Candida), 자이고사카로마이세스속(Zygosaccharomyces), 피치아속(Pichia), 한세뉼라속(Hansenula)을 들 수 있으며, 사카로마이세스속(Saccharomyces)으로는 바람직하게는, 사카로마이세스 세레비시아(Saccharomyces cerevisiae)를 들 수 있다. 그러나, 사카로마이세스 세레비시아 등의 야생주 효모는 그 세포 내에 있어서 주로 탄소수 18 이하의 포화 지방산 또는 1가 불포화 지방산은 합성할 수 있는데, 고도 불포화 지방산은 합성할 수 없다. 따라서, 사카로마이세스 세레비시아 등의 효모를 숙주 세포로서 사용하는 경우에는, 상기 효모 세포는 유전자 재조합 등에 의해 고도 불포화 지방산을 합성하는 능력이 부여되어 있는 것이 바람직하다. 이러한 고도 불포화 지방산을 합성하는 능력은 이미 고도 불포화 지방산을 합성하는 능력을 갖는 생물에서 유래되는 단백질로서, 지방산 합성에 관여하는 단백질을 코딩하는 유전자를 도입함으로써 부여할 수 있다.
"이미 고도 불포화 지방산을 합성하는 능력을 갖는 생물"의 예로는, 지질 생산균을 들 수 있다. 지질 생산균의 구체적인 예는 앞에서 진술한 바와 같다.
또한, 이미 고도 불포화 지방산을 합성하는 능력을 갖는 생물에서 유래되는 단백질로서, "지방산 합성에 관여하는 단백질을 코딩하는 유전자"의 예로는, Δ12 지방산 불포화화 효소 유전자, Δ6 지방산 불포화화 효소 유전자, GLELO 지방산 쇄 길이 연장 효소 유전자 및 Δ5 지방산 불포화화 효소 유전자 등을 들 수 있는데, 이들에 한정되지 않는다. Δ12 지방산 불포화화 효소 유전자, Δ6 지방산 불포화화 효소 유전자, GLELO 지방산 쇄 길이 연장 효소 유전자 및 Δ5 지방산 불포화화 효소 유전자의 염기 서열은 GenBank 등의 데이터베이스에 액세스함으로써 입수하는 것이 가능하며, 예컨대, GenBank에 있어서는 각각 No. AB020033, No. AB020032, No. AB193123 및 No. AB188307의 등록 번호(accession number)를 입력함으로써 각 서열을 입수할 수 있다.
상기한 지방산 합성 관련 단백질의 유전자는 적절한 벡터(예컨대, pESC(Stratagene) 또는 pYES(Invitrogen) 등)에 삽입한 후에 일렉트로포레이션법, 스페로플라스트법(Proc. Natl. Acad. Sci. USA, 75 p1929(1978)), 아세트산 리튬법(J. Bacteriology, 153, p163(1983)) 및 Proc. Natl. Acad. Sci. USA, 75 p1929(1978), Methods in yeast genetics, 2000 Edition: A Cold Spring Harbor Laboratory Course Manual 등에 기재된 방법으로 효모에 도입할 수 있다.
지방산은 본 발명의 폴리뉴클레오타이드 또는 본 발명의 단백질을 코딩하는 폴리뉴클레오타이드로 형질전환한 숙주 세포로부터 이하와 같이 하여 추출할 수 있다. 숙주 세포에 대해 배양 종료 후 원심 분리법, 여과 등의 통상법을 따라 배양 세포를 얻는다. 세포를 충분히 수세하고, 바람직하게는 건조한다. 건조는 동결 건조, 풍건 등에 의해 수행할 수 있다. 건조 세포를 필요에 따라 다이노밀이나 초음파 등에 의해 파쇄한 후, 바람직하게는 질소 기류 하에서 유기 용매에 의해 추출 처리한다. 유기 용매로는 에테르, 헥산, 메탄올, 에탄올, 클로로포름, 디클로로메탄, 석유 에테르 등을 사용할 수 있고, 또는 메탄올 및 석유 에테르의 교대 추출 또는 클로로포름-메탄올-물의 1층계의 용매를 이용한 추출에 의해서도 양호한 결과를 얻을 수 있다. 추출물로부터 감압 하에서 유기 용매를 증류 제거함으로써 지방산을 함유하는 지질을 얻을 수 있다. 추출한 지방산은 염산 메탄올법 등에 의해 메틸에스테르화할 수도 있다.
또한, 각종 지방산의 양 또는 비율은 상기한 바와 같이 하여 추출한 지방산을 각종 크로마토그래피법으로 분석함으로써 측정할 수 있다. 크로마토그래피법의 예로는 고속 액체 크로마토그래피 및 가스 크로마토그래피를 들 수 있으며, 특히 바람직한 예로서 가스 크로마토그래피를 들 수 있는데, 이에 한정되지 않는다.
3. 본 발명의 벡터 및 이를 도입한 형질전환
체
본 발명은 또한 다른 실시 형태에 있어서 본 발명의 폴리뉴클레오타이드를 함유하는 발현 벡터를 제공한다.
본 발명의 벡터는 통상적으로
(i) 숙주 세포 내에서 전사 가능한 프로모터;
(ii) 상기 프로모터에 결합한, 상기 (a) 내지 (g) 중 어느 하나에 기재된 폴리뉴클레오타이드; 및
(iii) RNA 분자의 전사 종결 및 폴리아데닐화에 관해 숙주 세포 내에서 기능하는 시그널을 구성 요소로서 포함하는 발현 카세트
를 포함하도록 구성된다.
이와 같이 구축되는 벡터는 숙주 세포에 도입된다. 본 발명에 있어서 사용되는 적절한 숙주 세포의 예는 앞에서 진술한 바와 같다.
본 발명의 벡터로 형질전환된 이들 숙주 세포는 본 발명의 벡터로 형질전환되지 않은 숙주 세포에 비해 ACS 활성이 증가했거나, 보다 많은 지방산을 생산하거나, 또는 세포 내에 함유되는 각종 지방산의 양 또는 비율이 변화되었다.
지질 생산균에 도입할 때 사용하는 벡터로는, 예컨대, pDura5(Appl. Microbiol. Biotechnol., 65, 419-425, (2004))가 이용 가능한데, 이에 한정되지 않는다.
효모에 도입할 때 사용하는 벡터로는 효모 세포 내에서 인서트를 발현하는 활성을 갖는 벡터라면 특별히 한정되지 않으나, 예로는 pYE22m(Biosci. Biotech. Biochem., 59, 1221-1228, 1995)을 들 수 있다.
숙주 세포 중에서의 유전자 발현을 조절하기 위한 프로모터/터미네이터로는 숙주 세포 중에서 기능하는 한 임의의 조합일 수도 있다. 예컨대, 지질 생산균에서 이용하는 경우에는 histon H4.1 유전자의 프로모터, 글리세르알데히드-3-인산 데히드로게나제 유전자의 프로모터 등이 이용 가능하다.
형질전환 시에 사용하는 선택 마커로는 영양 요구성 마커(ura5, niaD), 하이그로마이신 내성 유전자, 제오신 내성 유전자, 제네티신 내성 유전자(G418r), 구리 내성 유전자(CUP1)(Marin et al., Proc. Natl. Acad. Sci. USA, 81, 337 1984), 셀레닌 내성 유전자(fas2m, PDR4)(각각 이노코시 준지 등, 생화학, 64, 660, 1992; Hussain et al., gene, 101, 149, 1991) 등이 이용 가능하다.
숙주 세포의 형질전환 방법으로는 일반적으로 이용되는 공지의 방법을 이용할 수 있다. 예컨대, 지질 생산균의 경우, 일렉트로포레이션법(Mackenxie D. A. et al. Appl. Environ. Microbiol., 66, 4655-4661, 2000)이나 파티클 딜리버리법(일본 특허 공개 2005-287403 "지질 생산균의 육종 방법"에 기재된 방법)을 이용할 수 있다. 또한, 효모의 경우에는, 일렉트로포레이션법, 스페로플라스트법(Proc. Natl. Acad. Sci. USA, 75 p1929(1978)), 아세트산 리튬법(J. Bacteriology, 153, p163(1983)), Proc. Natl. Acad. Sci. USA, 75 p1929(1978), Methods in yeast genetics, 2000 Edition: A Cold Spring Harbor Laboratory Course Manual 등에 기재된 방법으로 실시 가능하나, 이들에 한정되지 않는다.
그 밖에 일반적인 클로닝 기술에 관해서는 "Sambrook & Russell, Molecular Cloning: A Laboratory Manual Vol. 3, Cold Spring Harbor Laboratory Press 2001", "Methods in Yeast Genetics, A laboratory manual(Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY)" 등을 참조할 수 있다.
4. 본 발명의 지질 또는 지방산 조성물의 제조 방법
본 발명은 또한 다른 실시 형태에 있어서, 상기한 형질전환체를 이용하는 지질 또는 지방산 조성물의 제조 방법을 제공한다.
본 명세서에 있어서, "지질"이란 지방산과 알콜이 에스테르 결합한 화합물(예컨대, 글리세라이드) 또는 그 유사체(예컨대, 콜레스테롤 에스테르) 등을 포함하는 단순 지질, 단순 지질의 일부에 인산, 아미노산, 당 등이 더 결합한 복합 지질 및 지질의 가수 분해물로서 물에 녹지 않는 유도 지질을 말하는 것으로 한다.
본 명세서에 있어서, "유지"란 글리세롤과 지방산의 에스테르(글리세라이드)를 말한다.
"지방산"에 대해서는 앞에서 기재한 바와 같다.
본 발명의 지질 또는 지방산 조성물의 추출 방법은 앞에서 진술한 지방산의 추출 방법과 동일하다.
지방산을 함유하는 지질로부터의 지방산의 분리는 혼합 지방산 또는 혼합 지방산 에스테르의 상태에서 통상법(예컨대, 우레아 부가법, 냉각 분리법, 칼럼 크로마토그래피법 등)에 의해 농축 분리함으로써 수행할 수 있다.
본 발명의 방법에 의해 제조되는 지질은, 바람직하게는 불포화 지방산이며, 더욱 바람직하게는, 고도 불포화 지방산을 포함한다. 고도 불포화 지방산의 바람직한 예로는, 탄소수 18 이상의 불포화 지방산, 예컨대, 탄소수 18 또는 20의 불포화 지방산이며, 그 예로는 올레인산, 리놀레산, 리놀렌산(γ-리놀렌산 및 디호모 γ-리놀렌산 등), 아라키돈산 등을 들 수 있는데, 이들에 한정되지 않는다. 특히 바람직하게는, 고도 불포화 지방산은 리놀레산, γ-리놀렌산, 디호모 γ-리놀렌산 및 아라키돈산이고, 보다 바람직하게는 리놀레산, 디호모 γ-리놀렌산 및 아라키돈산이며, 가장 바람직하게는 디호모 γ-리놀렌산 및 아라키돈산이다.
또한, 본 발명의 방법에 의해 생성되는 지질 및 상기 지질에 포함되는 지방산의 조성은 상기한 지질의 추출 방법, 지방산의 분리 방법 또는 이들의 조합에 의해 확인할 수 있다.
본 발명의 제조 방법에 의해 얻어진 지질 또는 지방산 조성물은 통상법을 따라, 예컨대, 유지를 포함하는 식품, 의약품, 공업 원료(화장료, 비누 등의 원료)의 제조 등의 용도에 사용할 수 있다.
본 발명은 또한, 다른 실시 형태에 있어서, 본 발명의 형질전환체를 이용하는 식품, 화장료, 의약, 비누 등의 제조 방법을 제공한다. 이 방법은 본 발명의 형질전환체를 이용하여 지질 또는 지방산을 생성하는 공정을 포함한다. 생성된 지질 또는 지방산을 함유하는 식품, 화장료, 의약, 비누 등의 조제는 통상법에 의한다. 이와 같이 본 발명의 제조 방법에 의해 제조된 식품, 화장료, 의약, 비누 등은 본 발명의 형질전환체를 이용하여 생성된 지질 또는 지방산을 함유한다. 본 발명은 나아가, 그러한 방법에 의해 제조된 식품, 화장료, 의약, 비누 등을 제공한다.
본 발명의 화장품(조성물) 또는 의약품(조성물)의 제형은 특별히 한정되지 않으며, 용액형, 페이스트형, 겔형, 고체형, 분말형 등 임의의 제형을 취할 수 있다. 또한, 본 발명의 화장료 조성물 또는 의약 조성물은 오일, 로션, 크림, 유액, 젤, 샴푸, 헤어 린스, 헤어 컨디셔너, 에나멜, 파운데이션, 립스틱, 분, 팩, 연고, 향수, 파우더, 오데코롱, 치약, 비누, 에어로졸, 클렌징 폼 등의 화장료 또는 피부 외용약 이외에 피부 노화 방지 개선제, 피부 염증 방지 개선제, 목욕용제, 양모제, 피부 미용액, 썬스크린제 혹은 외상, 살틈, 손발 갈라짐 등으로 인한 피부 거칠음의 방지 개선제 등에 이용할 수 있다.
본 발명의 화장료 조성물은 필요에 따라 그 밖의 유지 및/또는 색소, 향료, 방부제, 계면 활성제, 안료, 산화 방지제 등을 적당히 더 배합할 수 있다. 이들의 배합 비율은 목적에 따라 당업자가 적당히 결정할 수 있다(예컨대, 유지는 조성물 중에 1 내지 99.99 중량%, 바람직하게는 5 내지 99.99 중량%, 보다 바람직하게는 10 내지 99.95 중량% 함유될 수 있다). 또한, 본 발명의 의약 조성물은 필요에 따라 그 밖의 의약 활성 성분(예컨대, 소염 성분) 또는 보조 성분(예컨대, 윤활 성분, 담체 성분)을 더 포함하고 있을 수도 있다. 예컨대, 화장료 혹은 피부 외용약에 있어서 그 밖의 상용 성분으로는 여드름용 약제, 비듬 및 가려움 방지제, 제한 방취제, 열상용 약제, 진드기?이 방지제, 각질 연화제, 건피증용 약제, 항바이러스제, 경피 흡수 촉진제 등을 들 수 있다.
본 발명의 식품의 예로는 영양 보조 식품, 건강 식품, 기능성 식품, 유아용 식품, 유아용 조제유, 미숙아용 조제유, 노인용 식품 등을 들 수 있다. 본 명세서에 있어서, 식품은 고체, 유동체 및 액체, 그리고 이들의 혼합물로서 섭식 가능한 것의 총칭이다.
영양 보조 식품이란 특정 영양 성분이 강화되어 있는 식품을 말한다. 건강 식품이란 건강적인 또는 건강에 좋다고 하는 식품을 말하며, 영양 보조 식품, 자연 식품, 다이어트 식품 등을 포함한다. 기능성 식품이란 몸의 조절 기능을 하는 영양 성분을 보급하기 위한 식품을 말하며, 특정 보건 용도 식품과 동일한 의미이다. 유아용 식품이란 약 6세까지의 아이에게 제공하기 위한 식품을 말한다. 노인용 식품이란 무처리 식품과 비교하여 소화 및 흡수가 용이하도록 처리된 식품을 말한다. 유아용 조제유란 약 1세까지의 아이에게 제공하기 위한 조제유를 말한다. 미숙아용 조제유란 미숙아가 생후 약 6개월이 될 때까지 제공하기 위한 조제유를 말한다.
이들 식품의 형태의 예로는, 고기, 생선, 너츠 등의 천연 식품(유지로 처리한 것), 중화 요리, 라면, 스프 등의 조리시에 유지를 가하는 식품, 튀김, 후라이, 유부, 볶음밥, 도넛, 조청유과 등의 열 매체로서 유지를 이용한 식품, 버터, 마가린, 마요네즈, 드레싱, 초콜릿, 즉석 라면, 카라멜, 비스킷, 쿠키, 케익, 아이스크림 등의 유지 식품 또는 가공시에 유지를 가한 가공 식품, 오가키, 하드 비스킷, 팥빵 등의 가공 마무리시에 유지를 분무 또는 도포한 식품 등을 들 수 있다. 그러나, 유지를 포함하는 식품에 한정되는 것은 아니며, 예컨대, 빵, 면류, 밥, 과자류(캔디, 츄잉검, 구미, 정과, 화과자), 두부 및 그 가공품 등의 농산식품, 청주, 약용주, 미림, 식초, 간장, 된장 등의 발효 식품, 요구르트, 햄, 베이컨, 소시지 등의 축산 식품, 어묵, 어묵튀김, 한펜 등의 수산 식품, 과즙 음료, 청량 음료, 스포츠 음료, 알콜 음료, 차 등일 수도 있다.
본 발명의 식품은 또한 캡슐 등의 의약 제제의 형태, 또는 단백질, 당류, 지방, 미량 원소, 비타민류, 유화제, 향료 등에 본 발명의 유지가 배합된 자연 유동식, 반소화태 영양식 및 성분 영양식, 드링크제, 경장 영양제 등의 가공 형태일 수도 있다.
이상에 기재하는 바와 같이, 본 발명의 ACS 호몰로그의 유전자를 숙주 세포 내에서 발현시킴으로써 효율적으로 지방산을 생성시키는 것이 가능하다.
또한, 상기 유전자의 발현량을 지표로 하여 지방산 생산을 효율적으로 수행하기 위한 배양 조건의 검토, 배양 관리 등에도 이용할 수 있다.
실시예
이하, 실시예를 이용하여 본 발명을 보다 구체적으로 설명하지만, 본 발명의 범위는 이들 실시예에 의해 한정되지 않는다.
[실시예 1] 모르티에렐라 알피나( Mortierella alpina )의 게놈 해석
M. alpina 1S-4주를 100ml의 GY2:1 배지(2% 글루코오스, 1% 효모 엑기스 pH 6.0)에 식균하고, 28℃에서 2일간 진탕 배양했다. 여과에 의해 균체를 집균하고, DNeasy(QIAGEN)를 이용하여 게놈 DNA를 조제했다. 상기 게놈 DNA의 염기 서열을 Roche 454 GS FLX Standard를 이용하여 결정했다. 그 때, 프래그먼트 라이브러리의 염기 서열 결정을 2런분, 메이트 페어 라이브러리의 염기 서열 결정을 3런분 수행했다. 얻어진 염기 서열을 어셈블리함으로써 300개의 Super Contig가 얻어졌다.
cDNA
의 합성과
cDNA
라이브러리의 제작
M. alpina 1S-4주를 100ml의 배지(1.8% 글루코오스, 1% 효모 엑기스, pH 6.0)에 식균하고, 3일간 28℃에서 전배양했다. 10L 배양조(Able Co., 도쿄)에 5L의 배지(1.8% 글루코오스, 1% 대두 가루, 0.1% 올리브유, 0.01% 아데카놀, 0.3% KH2PO4, 0.1% Na2SO4, 0.05% CaCl2?2H2O, 0.05% MgCl2?6H2O, pH 6.0)를 넣고, 전배양물을 전량 식균하고, 300rpm, 1vvm, 26℃의 조건에서 8일간 통기 교반 배양했다. 배양 1, 2 및 3일째에 각각 2%, 2% 및 1.5% 상당의 글루코오스를 첨가했다. 배양 1, 2, 3, 6 및 8일째의 각 스테이지에 균체를 회수하고, 염산 구아니딘/CsCl법으로 총 RNA를 조제했다. Oligotex-dT30 <Super> mRNA Purification Kit(Takara Bio Inc.)를 이용하여 총 RNA로부터 poly(A)+RNA의 정제를 수행했다. 각 스테이지의 cDNA 라이브러리를 ZAP-cDNA GigapackIII Gold Cloning Kit(STRATAGENE)를 이용하여 제작했다.
ACS
호몰로그의
탐색
효모의 ACS인 ScFAA1(YOR317W), ScFAA2(YER015W), ScFAA3(YIL009W), ScFAA4(YMR246W), ScFAT1(YBR041W), ScFAT2(YBR222C)의 아미노산 서열을 query 서열로 하여 M. alpina 1S-4의 게놈 염기 서열에 대해 tblastn 검색을 수행했다. 그 결과, 12종류의 서열이 히트되었다. 즉, 서열 번호 5, 서열 번호 10, 서열 번호 15, 서열 번호 20, 서열 번호 25, 서열 번호 30, 서열 번호 35, 서열 번호 40, 서열 번호 45, 서열 번호 50, 서열 번호 55, 서열 번호 60의 서열을 포함하는 Super Contig가 히트되었다. 서열 번호 5에 따른 유전자를 MaACS-1, 서열 번호 10에 따른 유전자를 MaACS-2, 서열 번호 15에 따른 유전자를 MaACS-3, 서열 번호 20에 따른 유전자를 MaACS-4, 서열 번호 25에 따른 유전자를 MaACS-5, 서열 번호 30에 따른 유전자를 MaACS-6, 서열 번호 35에 따른 유전자를 MaACS-7, 서열 번호 40에 따른 유전자를 MaACS-8, 서열 번호 45에 따른 유전자를 MaACS-9, 서열 번호 50에 따른 유전자를 MaACS-10, 서열 번호 55에 따른 유전자를 MaACS-11, 서열 번호 60에 따른 유전자를 MaACS-12로 했다.
ACS
호몰로그의
클로닝
MaACS-1 내지 12의 유전자에 대응하는 cDNA를 클로닝하기 위해, 상기 cDNA 라이브러리의 스크리닝을 수행했다. 또한, 프로브의 라벨링은 ExTaq(Takara Bio Inc.)를 이용한 PCR에 의해 수행했다. 즉, ExTaq에 첨부된 dNTP 믹스 대신 PCR 라벨링 믹스(Roche Diagnositcs)를 이용하여 증폭되는 DNA를 디곡시제닌(DIG) 라벨한 프로브를 제작했다.
하이브리다이제이션의 조건은 다음과 같다.
버퍼: 5×SSC, 1% SDS, 50mM Tris-HCl(pH7.5), 50% 포름아미드;
온도: 42℃(하룻밤);
세정 조건: 0.2×SSC, 0.1% SDS 용액 중(65℃)에서 20분간×3회;
검출은 DIG 핵산 검출 키트(Roche Diagnositcs)를 이용하여 수행했다. 스크리닝에 의해 얻어진 파지 클론으로부터 인비보 엑시전에 의해 플라스미드를 잘라내어 각 플라스미드 DNA를 얻었다.
이하에 각 유전자의 스크리닝에 사용한 프로브 제작용 프라이머, 얻어진 각 유전자의 CDS의 염기수, CDS의 염기 서열로부터 유도되는 아미노산 서열의 아미노산 수 및 게놈 DNA 서열과 CDS 서열의 비교에 따른 엑손, 인트론의 수를 기재한다.
서열 해석
M. alpina 유래의 12종류의 ACS 호몰로그의 CDS 염기 서열간의 동일성을 표 1에, 아미노산 서열간의 동일성을 표 2에 나타냈다. MaACS-11과 MaACS-12는 염기 서열에서 80.2%, 아미노산 서열에서 84.3%로 높은 동일성을 나타냈다.
MaACS-1 내지 12의 CDS 서열의 추정 아미노산 서열을 query 서열로 하여, GenBank에 등록되어 있는 아미노산 서열에 대해 BLASTp 검색을 수행했다. MaACS-1 내지 12의 추정 아미노산 서열과 가장 높은 스코어로 히트한 아미노산 서열을 갖는 단백질 및 상기 단백질의 아미노산 서열과 MaACS-1 내지 12의 추정 아미노산 서열과의 동일성을 표 3에 나타냈다. 또한, S. cerevisiae 유래의 아실?CoA 신세타제의 아미노산 서열에 대한 MaACS-1 내지 12의 추정 아미노산 서열의 동일성을 표 4에 나타냈다.
또한, MaACS-1 내지 12 중 S.cerevisiae 유래의 FAA 단백질과 비교적 높은 아미노산 서열의 상동성을 갖는 MaACS와 상기 FAA 단백질과의 얼라인먼트를 도 25에 나타냈다. 또한 S. cerevisiae 유래의 FAT 단백질과 비교적 높은 아미노산 서열의 상동성을 갖는 ACS 호몰로그의 얼라인먼트를 도 26에 나타냈다. 도 25 및 도 26에 나타낸 어느 그룹의 ACS 호몰로그도 ACS 활성에 중요한 모티브인 ATP-AMP 모티브와 FACS/VLACS-FATP 모티브의 영역이 고도로 보존되어 있다.
발현 벡터의 구축
효모 발현용 벡터 pYE22m(Biosci. Biotech. Biochem., 59, 1221-1228, 1995)을 이용하여 이하와 같이 MaACS-1, MaACS-10, MaACS-11, MaACS-6, MaACS-8, MaACS-9를 각각 효모에서 발현시키기 위한 벡터를 구축했다.
MaACS-6을 스크리닝하여 얻어진 서열 번호 29를 포함하는 플라스미드를 제한 효소 BamHI 및 XhoI로 소화하고, 얻어진 약 2.1kbp의 DNA 단편과 벡터 pYE22m을 제한 효소 BamHI 및 SalI로 소화한 DNA 단편을 ligation high(TOYOBO)를 이용하여 연결함으로써 플라스미드 pYE-ACS-6을 얻었다.
MaACS-8의 cDNA를 포함하는 플라스미드를 주형으로 하고, 이하의 프라이머를 사용하여 ExTaq(Takara Bio Inc.)를 이용한 PCR 증폭에 의해 얻어진 DNA 단편을 TOPO-TA cloning Kit(Invitrogen)로 클론화했다.
인서트 부분의 염기 서열을 확인하고, 올바른 염기 서열을 갖는 플라스미드를 제한 효소 EcoRI 및 SmaI로 소화하여 얻어진 약 2.1kbp의 DNA 단편과 벡터 pYE22m을 제한 효소 EcoRII 및 SmaI로 소화한 DNA 단편을 ligation high(TOYOBO)를 이용하여 연결함으로써 플라스미드 pYE-ACS-8을 얻었다.
MaACS-9의 cDNA를 포함하는 플라스미드를 주형으로 하고, 이하의 프라이머를 사용하여 ExTaq(Takara Bio Inc.)를 이용한 PCR 증폭에 의해 얻어진 DNA 단편을 TOPO-TA cloning Kit(Invitrogen)로 클론화했다.
인서트 부분의 염기 서열을 확인하고, 올바른 염기 서열을 갖는 플라스미드를 제한 효소 EcoRI 및 BamHI로 소화하여 얻어진 약 2.0kbp의 DNA 단편과 벡터 pYE22m을 제한 효소 EcoRII 및 BamHI로 소화한 DNA 단편을 ligation high(TOYOBO)를 이용하여 연결함으로써 플라스미드 pYE-ACS-9를 얻었다.
MaACS-1의 cDNA를 포함하는 플라스미드를 주형으로 하고, 이하의 프라이머를 사용하여 ExTaq(Takara Bio Inc.)를 이용한 PCR 증폭에 의해 얻어진 DNA 단편을 TOPO-TA cloning Kit(Invitrogen)로 클론화했다.
인서트 부분의 염기 서열을 확인하고, 올바른 염기 서열을 갖는 플라스미드를 제한 효소 EcoRI 및 SalI로 소화하여 얻어진 약 1.9kbp의 DNA 단편과 벡터 pYE22m을 제한 효소 EcoRI 및 SalI로 소화한 DNA 단편을 ligation high(TOYOBO)를 이용하여 연결함으로써 플라스미드 pYE-ACS-1을 얻었다.
MaACS-10의 cDNA를 포함하는 플라스미드를 주형으로 하고, 이하의 프라이머를 사용하여 ExTaq(Takara Bio Inc.)를 이용한 PCR 증폭에 의해 얻어진 DNA 단편을 TOPO-TA cloning Kit(Invitrogen)로 클론화했다.
인서트 부분의 염기 서열을 확인하고, 올바른 염기 서열을 갖는 플라스미드를 제한 효소 EcoRI 및 KpnI로 소화하여 얻어진 약 2.1kpb의 DNA 단편과 벡터 pYE22m을 제한 효소 EcoRI 및 KpnI로 소화한 DNA 단편을 ligation high(TOYOBO)를 이용하여 연결하여 MaACS-10의 CDS의 5' 측에 벡터 pYE22m의 GAPDH 프로모터가 있는 방향으로 연결된 것을 선택함으로써 플라스미드 pYE-ACS-10을 얻었다.
MaACS-11의 cDNA를 포함하는 플라스미드를 주형으로 하고, 이하의 프라이머를 사용하여 ExTaq(Takara Bio Inc.)를 이용한 PCR 증폭에 의해 얻어진 DNA 단편을 TOPO-TA cloning Kit(Invitrogen)로 클론화했다.
인서트 부분의 염기 서열을 확인하고, 올바른 염기 서열을 갖는 플라스미드를 제한 효소 SacI 및 BamHI로 소화하여 얻어진 약 2.0kbp의 DNA 단편과 벡터 pYE22m을 제한 효소 SacI 및 BamHI로 소화한 DNA 단편을 ligation high(TOYOBO)를 이용하여 연결함으로써 플라스미드 pYE-ACS-11을 얻었다.
효모에서의
발현
형질전환주의 취득
플라스미드 pYE22m, pYE-MaACS-6, pYE-MaACS-8, pYE-MaACS-9를 각각 이용하여 아세트산 리튬법에 의해 효모 S. cerevisiae EH13-15주(trp1, MATα)(Appl. Microbiol. Biotechnol., 30, 515-520, 1989)를 형질전환했다. 형질전환주는 SC-Trp(1 l당 Yeast nitrogen base w/o amino acids(DIFCO) 6.7g, 글루코오스 20g 아미노산 파우더(아데닌황산염 1.25g, 아르기닌 0.6g, 아스파라긴산 3g, 글루타민산 3g, 히스티딘 0.6g, 로이신 1.8g, 리신 0.9g, 메티오닌 0.6g, 페닐알라닌 1.5g, 세린 11.25g, 티로신 0.9g, 발린 4.5g, 트레오닌 6g, 우라실 0.6g을 혼합한 것) 1.3g) 한천 배지(2% 아가) 상에서 생육하는 것을 기준으로 선발했다.
효모의 배양
각각의 플라스미드를 이용하여 형질전환하여 얻어진 임의의 1주씩을 이하의 배양 실험에 제공했다.
전배양으로서 SC-Trp 배지 10ml에 효모를 플레이트로부터 1백금이 식균하고, 30℃에서 1일간 진탕 배양을 수행했다. 본배양은 SC-Trp 배지에 전배양액을 1ml 첨가하고 30℃에서 1일간 진탕 배양을 수행했다.
균체의 지방산 분석
효모의 배양액을 원심 분리함으로써 균체를 회수했다. 10ml의 멸균수로 세정하고, 원심 분리에 의해 다시 균체를 회수하여 동결 건조했다. 염산 메탄올법에 의해 균체의 지방산을 메틸에스테르에 유도한 후, 헥산으로 추출, 헥산을 증류 제거하고 가스 크로마토그래피에 의해 분석을 수행했다.
배지 당 지방산 생산량을 표 5에 나타냈다. pYE22m로 형질전환한 컨트롤과 비교하여 ppYE-MaACS-6, pYE-MaACS-8 또는 pYE-MaACS-9로 형질전환한 주에서는 배지 당 지방산 생산량이 상승되어 있었다.
아라키돈산
생산
효모에서의
발현
(1)
아라키돈산
효모의 육종
아라키돈산 생산 효모(S. cerevisiae)를 육종하기 위해 이하의 플라스미드를 구축했다.
먼저, M. alpina 1S-4주로부터 조제한 cDNA를 주형으로 하고, 이하의 프라이머 Δ12-f 및 Δ12-r, Δ6-f 및 Δ6-r, GLELO-f 및 GLELO-r 또는 Δ5-f 및 Δ5-r의 조합에 의해 ExTaq를 이용하여 PCR을 수행하고, M. alpina 1S-4주의 Δ12 지방산 불포화화 효소 유전자(GenBank accession No. AB020033)(이하, "Δ12 유전자"), Δ6 지방산 불포화화 효소 유전자(GenBank accession No.AB020032)(이하, "Δ6 유전자"), GLELO 지방산 쇄 길이 연장 효소 유전자(GenBank accession No. AB193123)(이하, "GLELO 유전자") 및 Δ5 지방산 불포화화 효소 유전자(GenBank accession No. AB188307)(이하, "Δ5 유전자")를 증폭했다.
이들을 TOPO-TA-cloning Kit에 의해 클론화했다. 염기 서열을 확인하고, Δ12 유전자, Δ6 유전자, GLELO 유전자 및 Δ5 유전자의 염기 서열을 포함하는 클론을 각각 플라스미드 pCR-MAΔ12DS(Δ12 유전자의 염기 서열을 포함함), pCR-MAΔ6DS(Δ6 유전자의 염기 서열을 포함함), pCR-MAGLELO(GLELO 유전자의 염기 서열을 포함함), pCR-MAΔ5DS(Δ5 유전자의 염기 서열을 포함함)로 했다.
한편, 플라스미드 pURA34(일본 특허 공개 2001-120276)를 제한 효소 HindIII로 소화하여 얻어진 약 1.2kb의 DNA 단편을 벡터 pUC18(Takara Bio Inc.)을 제한 효소 EcoRI와 SphI로 소화한 후 말단을 평활화하고, 셀프 라이게이션하여 얻어진 벡터의 HindIII 사이트에 삽입하고, 벡터의 EcoRI 사이트 측이 URA3의 5' 측인 클론을 pUC-URA3으로 했다. 또한, YEp13을 제한 효소 SalI와 XhoI로 소화하여 얻어진 약 2.2kb의 DNA 단편을 벡터 pUC18의 SalI 사이트에 삽입하고, 벡터의 EcoRI 측이 LUE2의 5' 측인 클론을 pUC-LEU2로 했다.
다음, 플라스미드 pCR-MAΔ12DS를 제한 효소 HindIII로 소화한 후에 말단을 평활화한 것을 제한 효소 XbaI로 소화하여 얻어진 약 1.2kbp의 DNA 단편과 벡터 pESC-URA(STRATAGENE)를 제한 효소 SacI로 소화한 후에 말단을 평활화한 것을 제한 효소 SpeI로 소화한 약 6.6kbp의 DNA 단편을 연결하여 플라스미드 pESC-U-Δ12를 얻었다. 플라스미드 pCR-MAΔ6DS를 제한 효소 XbaI로 소화한 후에 말단을 평활화한 것을 제한 효소 HindIII으로 소화하여 얻어진 약 1.6kbp의 DNA 단편과 플라스미드 pESC-U-Δ12를 제한 효소 SalI로 소화한 후에 말단을 평활화한 것을 제한 효소 HindIII으로 소화한 약 8kbp의 DNA 단편을 연결하여 플라스미드 pESC-U-Δ12:Δ6을 얻었다. 이것을 제한 효소 PvuII로 부분 소화하여 얻어진 약 4.2kb의 단편을 pUC-URA3의 SmaI 사이트에 삽입하여 플라스미드 pUC-URA-Δ12:Δ6을 얻었다.
또한, 플라스미드 pCR-MAGLELO를 제한 효소 XbaI와 SacI로 소화하여 얻어진 약 0.95kbp의 DNA 단편과 벡터 pESC-LEU(STRATAGENE)를 제한 효소 XbaI와 SacI로 소화하여 얻어진 약 7.7kbp의 DNA 단편을 연결하여 플라스미드 pESC-L-GLELO를 얻었다. 플라스미드 pCR-MAΔ5DS를 제한 효소 XbaI로 소화한 후에 말단을 평활화한 것을 제한 효소 HindIII으로 소화하여 얻어진 약 1.3kbp의 DNA 단편과 플라스미드 pESC-L-GLELO를 제한 효소 ApaI로 소화한 후에 말단을 평활화한 것을 제한 효소 HindIII으로 소화하여 얻어진 약 8.7kbp의 DNA 단편을 연결하여 플라스미드 pESC-L-GLELO:Δ5를 얻었다. 이것을 제한 효소 PvuII로 소화하여 얻어진 약 3.2kbp 단편을 pUC-LEU2의 SmaI 사이트에 삽입하여 플라스미드 pUC-LEU-GLELO:Δ5를 얻었다. 사카로마이세스 세레비시아(Saccharomyces cerevisiae) YPH499주(STRATAGENE)를 플라스미드 pUC-URA-Δ12:Δ6과 플라스미드 pUC-LEU-GLELO:Δ5로 동시형질전환(co-transformation)했다. 형질전환주는 SC-Leu, Ura 한천 배지 상에서 생육하는 것을 기준으로 선발했다. 이와 같이 하여 얻어진 주 중 임의의 1주를 ARA3-1주로 했다. 이 주는 갈락토스를 포함하는 배지에서 배양함으로써 GAL1/10 프로모터로부터 Δ12 지방산 불포화화 효소 유전자, Δ6 지방산 불포화화 효소 유전자, GLELO 유전자, Δ5 지방산 불포화화 효소 유전자를 발현시킬 수 있다.
(2)
아라키돈산
생산 효모에의 형질전환과 해석
ARA3-1주를 플라스미드 pYE22m, pYE-ACS-1, pYE-ACS-10, pYE-ACS-11로 각각 형질전환했다. 형질전환주는 SC-Trp, Leu, Ura(1L 당 Yeast nitrogen base w/o amino acids(DIFCO) 6.7g, 글루코오스 20g, 아미노산 파우더(아데닌황산염 1.25g, 아르기닌 0.6g, 아스파라긴산 3g, 글루타민산 3g, 히스티딘 0.6g, 리신 0.9g, 메티오닌 0.6g, 페닐알라닌 1.5g, 세린 11.25g, 티로신 0.9g, 발린 4.5g, 트레오닌 6g을 혼합한 것) 1.3g) 한천 배지(2% 아가) 상에서 생육하는 것을 기준으로 선발했다. 각각의 플라스미드 도입주 중에서 임의의 4주를 이하의 배양 실험에 사용했다.
이들 주를 상기 SC-Trp, Leu, Ura 액체 배지 10ml에서 30℃, 1일간 배양했다. 그 중 1ml를 SG-Trp, Leu, Ura(1L 당 Yeast nitrogen base w/o amino acids (DIFCO) 6.7g, 갈락토스 20g, 아미노산 파우더(아데닌황산염 1.25g, 아르기닌 0.6g, 아스파라긴산 3g, 글루타민산 3g, 히스티딘 0.6g, 리신 0.9g, 메티오닌 0.6g, 페닐알라닌 1.5g, 세린 11.25g, 티로신 0.9g, 발린 4.5g, 트레오닌 6g을 혼합한 것) 1.3g) 액체 배지 10ml에 식균하고, 15℃, 6일간 배양했다. 집균하고 수세한 후 동결 건조했다. 염산 메탄올법에 의해 건조 균체 내의 지방산을 메틸에스테르에 유도하고 가스 크로마토그래피에 의해 지방산 분석을 수행했다. 플라스미드 pYE22m으로 형질전환한 컨트롤주 및 모르티에렐라 유래의 각 ACS 호몰로그로 형질전환한 주의 총 지방산에 대한 각 PUFA의 조성비를 표 6에 나타냈다.
표 6에 나타낸 바와 같이, 모르티에렐라 유래의 ACS 호몰로그를 발현시킴으로써 지방산의 조성을 개변시킬 수 있었다. 특히, MaACS-11 발현주에서는 컨트롤주에 비해 아라키돈산의 조성비가 약 1.8배, 리놀레산은 약 1.5배, γ-리놀렌산은 2.4배로 증가해 있었다. 또한, MaACS-1 발현주에서는 컨트롤주에 비해 아라키돈산량은 약 1.5배로 증가해 있었다. 나아가, MaACS-10 발현주에서는 컨트롤주와 비교하여 리놀레산은 약 2배, γ-리놀렌산은 약 4배로 증가해 있었다.
[실시예 2] 발현 벡터의 구축
효모용 발현 벡터
MaACS-12를 효모에서 발현시키기 위한 벡터 pYE-ACS-12를 이하와 같이 구축했다. MaACS-12의 cDNA를 포함하는 플라스미드를 주형으로 하여,
를 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 증폭한 DNA 단편을 Zero Blunt TOPO PCR Cloning Kit(인비트로젠)로 클론화했다. 인서트 부분의 염기 서열을 확인하고, 올바른 염기 서열을 갖는 플라스미드를 제한 효소 EcoRI와 SmaI로 소화하여 얻어진 약 2kbp의 DNA 단편과 벡터 pYE22m을 제한 효소 BamHI로 소화한 후 Blunting Kit(TAKARA 바이오)를 이용하여 말단을 평활화하고, 계속해서 EcoRI로 소화한 DNA 단편을 Ligation High(TOYOBO)를 이용하여 연결하여 플라스미드 pYE-ACS-12를 얻었다.
M. alpina용 발현 벡터
MaACS-10과 MaACS-11을 M. alpina에서 발현시키기 위해 이하와 같이 벡터를 구축했다.
먼저, 벡터 pUC18을 제한 효소 EcoRI와 HindIII으로 소화하고, 올리고 DNA MCS-for-pUC18-F2와 MCS-for-pUC18-R2를 어닐링시킨 어댑터를 삽입하고, 플라스미드 pUC18-RF2를 구축했다.
M. alpina의 게놈 DNA를 주형으로 하고, 프라이머 Not1-GAPDHt-F와 프라이머 EcoR1-Asc1-GAPDHt-R을 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 증폭한 약 0.5kbp의 DNA 단편을 Zero Blunt TOPO PCR Cloning Kit(인비트로젠)로 클론화했다. 인서트 부분의 염기 서열을 확인한 후, 제한 효소 NotI와 EcoRI로 소화하여 얻어진 약 0.9kbp의 DNA 단편을 플라스미드 pUC18-RF2의 NotI 및 EcoRI 사이트에 삽입하여 플라스미드 pDG-1을 구축했다.
M. alpina의 게놈을 주형으로 하고, 프라이머 URA5g-F1과 프라이머 URA5g-R1을 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 증폭한 DNA 단편을 Zero Blunt TOPO PCR Cloning Kit(인비트로젠)로 클론화했다. 인서트 부분의 염기 서열을 확인한 후, 제한 효소 SalI로 소화하여 얻어진 약 2kbp의 DNA 단편을 플라스미드 pDG-1의 SalI 사이트에 삽입하고, URA5 유전자의 5' 측이 벡터의 EcoRI 측이 되는 방향으로 삽입된 것을 플라스미드 pDuraG로 했다.
계속해서, M. alpina의 게놈을 주형 프라이머 hisHp+URA5-F와 프라이머 hisHp+MGt-F를 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 증폭한 약 1.0kbp의 DNA 단편과, pDuraG를 주형으로 하고 프라이머 pDuraSC-GAPt-F와 프라이머 URA5gDNA-F를 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 증폭한 약 5.3kbp의 DNA 단편을 In-Fusion(등록 상표) Advantage PCR Cloning Kit(TAKARA 바이오)를 사용하여 연결하여 플라스미드 pDUra-RhG를 얻었다.
플라스미드 pDUra-RhG를 주형으로 하고, 프라이머 pDuraSC-GAPt-F와 프라이머 pDurahG-hisp-R을 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 약 6.3kbp의 DNA 단편을 증폭했다.
MaACS-10의 cDNA를 포함하는 플라스미드를 주형으로 하여
을 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 약 2.1kbp의 DNA 단편을 증폭했다. 얻어진 단편을, 상기 6.3kbp의 DNA 단편과 In-Fusion(등록 상표) Advantage PCR Cloning Kit(다카라 바이오)를 사용하여 연결하여 플라스미드 pDUraRhG-ACS-10을 얻었다.
MaACS-11의 cDNA를 포함하는 플라스미드를 주형으로 하여,
를 사용하여 KOD-plus-(TOYOBO)를 이용한 PCR로 약 2.1kbp의 DNA 단편을 증폭했다.
얻어진 단편을 상기 6.3kbp의 DNA 단편과 In-Fusion(등록 상표) Advantage PCR Cloning Kit(TAKARA 바이오)를 사용하여 연결하여 플라스미드 pDUraRhG-ACS-11을 얻었다.
ACS
활성의 평가
플라스미드 pYE22m, pYE-ACS-5, pYE-ACS-8, pYE-ACS-10, pYE-ACS-11, pYE-ACS-12로 효모 EH13-15를 각각 형질전환하여 얻어진 임의의 2주를 이하와 같이 배양했다. 전배양으로서 SC-Trp 배지 10ml에 균체를 1백금이 식균하고, 30℃, 1일 진탕 배양했다. 본배양으로서 SD-Trp 배지 100ml에 전배양액을 1% 식균하고, 28℃에서 1일 진탕 배양했다.
조효소액의 조제는 이하와 같이 수행했다. 원심 분리로 집균 후 수세하고, -80℃에서 균체를 일시적으로 보존했다. 균체를 Buffer B(50mM 인산나트륨 buffer(pH 6.0), 10% 글리세롤, 0.5mM PMSF) 5ml에 현탁하고, 프렌치 프레스(16kPa, 3회)로 균체를 파쇄했다. 1,500xg, 4℃에서 10분간 원심 분리하고, 얻어진 상청을 조효소액으로 했다.
ACS 활성의 측정은 참고 문헌(J.B.C., 272(8), 1896-4903, 1997)의 기재를 따라 이하의 순서로 수행했다. 반응액은 200mM Tris-HCl(pH7.5), 2.5mM ATP, 8mM MgCl2, 2mM EDTA, 20mM NaF, 0.1% Triton X-100, 지방산 50μg/ml, 50μM CoA, 조효소액(적당히 버퍼 B로 희석) 100μl를 포함하며, 이것을 전량 500μl로 하여 28℃에서 30분간 반응시켰다. 반응 종료 후 정지액(이소프로판올 : n-헵탄 : 1M 황산(40 : 20 : 1)) 2.5ml를 첨가하고 잘 교반했다. 또한, n-헵탄 2ml를 첨가하고 잘 교반한 후 원심 분리하여 상층을 회수했다. 하층에 2ml의 n-헵탄을 더 가하고, 동일한 방법으로 상층을 회수했다. 회수한 상층을 합하고, 원심 농축기로 건고시킨 후, 내부 표준으로서 0.2mg/ml의 트리코산산(23:0)을 50μl 첨가하고, 염산 메탄올법에 의해 지방산을 메틸에스테르에 유도하고, 가스 크로마토그래피에 의해 지방산 분석을 수행했다. 검출된 지방산량으로부터 아실-CoA로 되었기 때문에 상기 조작으로 하층에 분배된 지방산량을 산출했다. 이하의 표에 결과를 나타냈다. 또한, ACS 활성은 조효소액의 단백질량 당, 상기 조작으로 하층에 분배된 지방산량으로서 나타내었다. 컨트롤이란 pYE22m으로 형질전환한 주로서, 그 밖에는 각각의 유전자의 발현 벡터를 도입한 주이다.
팔미틴산을 기질로 한 경우, MaACS-5, MaACS-10, MaACS-11, MaACS-12는 컨트롤의 2 내지 4배 정도의 ACS 활성을 나타냈다.
올레인산을 기질로 한 경우, MaACS-10, MaACS-11, MaACS-12는 컨트롤의 2배 정도의 ACS 활성을 나타냈다.
리놀레산을 기질로 한 경우, MaACS-5, MaACS-8, MaACS-12는 컨트롤의 수 배(각각 3배, 3배, 6배 정도)의 ACS 활성을 나타낸 데 반해, MaACS-10과 MaACS-11은 컨트롤의 수십 배(각각 40배, 20배 정도)의 ACS 활성을 나타냈다.
γ-리놀렌산을 기질로 한 경우, MaACS-5, MaACS-8, MaACS-10, MaACS-11, MaACS-12는 모두 컨트롤의 2 내지 10배 정도의 ACS 활성을 나타냈다.
디호모 γ-리놀렌산을 기질로 한 경우, MaACS-10, MaACS-11, MaACS-12는 모두 컨트롤의 수십 배(각각 60배, 40배, 30배) 정도의 ACS 활성을 나타냈다.
아라키돈산을 기질로 한 경우, MaACS-10, MaACS-11, MaACS-12는 수십 배(각각 90배, 30배, 10배) 정도의 활성을 나타냈다.
이와 같이 특히 MaACS-10, MaACS-11, MaACS-12는 디호모γ-리놀렌산이나 아라키돈산 등 탄소수 20의 고도 불포화 지방산에 대한 활성이 높았다.
ACS
를 발현시킨 효모의
아라키돈산
취입 활성
플라스미드 pYE22m, pYE -ACS-10, pYE -ACS-11, pYE -ACS-12로 효모 EH13-15를 각각 형질전환하여 얻어진 임의의 2주를 이하와 같이 배양했다. 전배양으로서 SC-Trp 10ml에 1백금이 식균하고, 30℃, 1일간 진탕 배양했다. 본배양으로서 SC-Trp에 50μg/ml가 되도록 아라키돈산을 첨가한 배지 10ml에 전배양의 배양물을 100μl 첨가하고, 25℃, 1일 진탕 배양했다. 집균 후 동결 건조하고, 지방산 분석하고, 첨가한 아라키돈산 중 균체 내에 취입된 아라키돈산의 비율을 구했다. 결과를 표 14에 나타내었다. 컨트롤이란 pYE22m로 형질전환한 주로서, 그 이외는 각각의 유전자의 발현 벡터를 도입한 주이다.
M.
alpina
형질전환주의 취득
국제 공개 공보 WO2005/019437("지질 생산균의 육종 방법")에 기재된 방법에 따라 M. alpina 1S-4주로부터 유도한 우라실 요구성 주 Δura-3을 숙주로 하여 파티클 딜리버리법으로 플라스미드 pDUraRhG-ACS-10과 pDUraRhG-ACS-11을 이용하여 각각 형질전환을 수행했다. 형질전환주의 선택에는 SC 한천 배지(Yeast Nitrogen Base w/o Amino Acids and Ammonium Sulfate(Difco) 0.5%, 황산암모늄 0.17%, 글루코오스 2%, 아데닌 0.002%, 티로신 0.003%, 메티오닌 0.0001%, 아르기닌 0.0002%, 히스티딘 0.0002%, 리신 0.0004%, 트립토판 0.0004%, 트레오닌 0.0005%, 이소로이신 0.0006%, 로이신 0.0006%, 페닐알라닌 0.0006%, 한천 2%)를 사용했다.
형질전환 M. alpina 의 평가
얻어진 형질전환주를 GY 배지 4ml에 식균하고, 28℃에서 2일간 진탕 배양을 수행했다. 균체를 여과에 의해 회수하고, RNeasy plant kit(QIAGEN)를 이용하여 RNA를 추출했다. 수퍼스크립트 퍼스트 스트랜드 시스템 for RT-PCR(인비트로젠)에 의해 cDNA를 합성했다. 도입한 컨스트럭트로부터의 각 유전자의 발현을 확인하기 위해 이하의 프라이머의 조합으로 RT-PCR을 수행했다.
과잉 발현을 확인할 수 있는 주 중 각 1주에 대해 GY 배지(글루코오스 2%, 효모 엑기스 1%) 10ml에 식균하고, 28℃, 300rpm으로 3일간 진탕 배양했다. 이것을 GY 배지 500ml(2L 사카구치 플라스크)에 전량 옮기고, 28℃, 120rpm으로 진탕 배양했다. 이로부터 3일 후, 7일 후, 10일 후, 12일 후에 각각 5ml, 10ml씩 분취하고, 이것을 여과했다. 균체를 120℃에서 건조시키고, 염산 메탄올법에 의해 지방산을 메틸에스테르에 유도하고, 가스 크로마토그래피에 의해 지방산 분석을 수행했다. 건조 균체 당 지방산 생산량 및 아라키돈산 생산량의 시간 경과에 따른 변화를 조사했다. 또한, 형질전환의 숙주인 Δura-3주를 컨트롤로 했다. 결과를 도 27(MaACS-10) 및 도 28(MaACS-11)에 나타냈다.
도 27 및 도 28에 도시된 바와 같이, MaACS-10 및 MaACS-11을 M. alpina에서 과잉 발현시킨 경우, 균체 당 지방산량, 아라키돈산량 모두 컨트롤에 비해 증가해 있었다.
본 발명의 폴리뉴클레오타이드를 적절한 숙주 세포 내에서 발현시킴으로써 지방산, 특히 고도 불포화 지방산을 효율적으로 생성시킬 수 있다. 본 발명에 의해 숙주 세포 내에서 생성되는 지방산은 식품, 화장료, 의약, 비누 등의 제조에 이용할 수 있다.
SEQUENCE LISTING
<110> SUNTORY HOLDINGS LIMITED
<120> Acyl-CoA Synthetase Homologues and Use of the Same
<130> PCT11-0003
<150> JP 2010-19967
<151> 2010-02-01
<160> 123
<170> PatentIn version 3.4
<210> 1
<211> 1854
<212> DNA
<213> Mortierella alpina
<400> 1
atggatgctg tccctgcagt tgctgctgcg gccatccccg cagccatgta tgtcggctcc 60
aagcttgcaa tcccccgtga tgtcaagtta gctaaaggcc tagtcagtgc caagctaggt 120
tacaggtcct acgagaagaa cgactcgatc aatatctctt atcgttttga agagacctgt 180
aagaagcacc ctcatcgcga agctttggtg tttgaaggca aatcgtacac cttccaggac 240
atccagcgag aatcgaatag ggtgggacac tggctgttgt ccaaaggcgt caagcgagga 300
gagatcgtgt cgctcttcat gcaaaataag ccagagtttc tcttcttctg gcttggactc 360
aacaagatcg gcgctacggg agcattcatc aacacgaacc tctcgggcaa acctctgacg 420
cactcattgc gtaccgcgac agcatccatt ctgattatgg atgcggaact gccgacgccc 480
atttatagtg tcctcgatga agtccttgag atgggatatc agatatattc ctacggagga 540
tcccagcaac acgcctttgc tacacaagtt gaactttctc aaatctcgga tgcggccttg 600
cccaagagtc tgcgaaggaa aaccactgca aatgatattg ccatgttgat ttacacctcc 660
ggaacgacgg gtttgcccaa agctggacgg ttctcccatg ctcgagccaa cgttgccgca 720
cttttctgga cgtctttcta ccacttcagc gaaaaagacc gcctgtacat cgccttgcct 780
ctttaccaca gtgctggagc tgtccttgga atatgtgtgg cctgggtcac cggtgctacg 840
gtggtcctgg cgcgcaagtt ttcaactact tccttctggg acgaatgcag ggccaacaag 900
gtcaccgtga tccagtatat tggagaaatc tgccgatact tactgaatgc tcctccttct 960
cccttggaca agacacacac gatccgaatg gcgcatggca acggcatgcg tccggatgta 1020
tggaacagat tcagagatcg tttcggcatc cctttgatcg gagaatggta tgcaagcact 1080
gagggcaccg gaatcttgac aaactataac acaggaccca atggcgctgg tgcgatagga 1140
tacagaggct ccttggccag aactgtcgat aagggtctga agattgcgaa gttcgacatc 1200
caaaccgagg aacttattcg tgacaaaaat ggtcgatgca ttgagtgtgt cgcagatgag 1260
cccggcgagc tcttgacaat gattgattca agtgatccca ctcgcgcttt ccaagggtac 1320
cataaaaatg caggtgcaaa ctccaagaaa gtcgtccagg atgcattcag tgttggcgac 1380
caatactttc gtactggtga catccttcgt cgcgacgctg atggctattt ctattttggc 1440
gatcgtgttg gagatacttt ccgctggaaa tctgaaaacg tgtcaactgc ggaggtttct 1500
gaggtgctct cagcataccc ggactgcatc gaggtcaacg tttatggcgt tcaagtccct 1560
ggacacgacg gccgcgcagg catggctgcc attgtctcca aggacaccat gaactgggat 1620
agtttcgcca agtttgcact caaaaatctg ccgaagtact ctgtgccgat tttcatccgc 1680
aaggtcccag agatggagat tacgggaacg ttcaagcaac gaaaggttga actggtgaac 1740
gagggcatgg acccgagcaa gatcaaagac gaaatgctgt ggttggatgg gcactcctac 1800
cggcccttca aagaggcgga gcatactaga gtcgtcagcg gcaaagccag gctt 1854
<210> 2
<211> 618
<212> PRT
<213> Mortierella alpina
<400> 2
Met Asp Ala Val Pro Ala Val Ala Ala Ala Ala Ile Pro Ala Ala Met
1 5 10 15
Tyr Val Gly Ser Lys Leu Ala Ile Pro Arg Asp Val Lys Leu Ala Lys
20 25 30
Gly Leu Val Ser Ala Lys Leu Gly Tyr Arg Ser Tyr Glu Lys Asn Asp
35 40 45
Ser Ile Asn Ile Ser Tyr Arg Phe Glu Glu Thr Cys Lys Lys His Pro
50 55 60
His Arg Glu Ala Leu Val Phe Glu Gly Lys Ser Tyr Thr Phe Gln Asp
65 70 75 80
Ile Gln Arg Glu Ser Asn Arg Val Gly His Trp Leu Leu Ser Lys Gly
85 90 95
Val Lys Arg Gly Glu Ile Val Ser Leu Phe Met Gln Asn Lys Pro Glu
100 105 110
Phe Leu Phe Phe Trp Leu Gly Leu Asn Lys Ile Gly Ala Thr Gly Ala
115 120 125
Phe Ile Asn Thr Asn Leu Ser Gly Lys Pro Leu Thr His Ser Leu Arg
130 135 140
Thr Ala Thr Ala Ser Ile Leu Ile Met Asp Ala Glu Leu Pro Thr Pro
145 150 155 160
Ile Tyr Ser Val Leu Asp Glu Val Leu Glu Met Gly Tyr Gln Ile Tyr
165 170 175
Ser Tyr Gly Gly Ser Gln Gln His Ala Phe Ala Thr Gln Val Glu Leu
180 185 190
Ser Gln Ile Ser Asp Ala Ala Leu Pro Lys Ser Leu Arg Arg Lys Thr
195 200 205
Thr Ala Asn Asp Ile Ala Met Leu Ile Tyr Thr Ser Gly Thr Thr Gly
210 215 220
Leu Pro Lys Ala Gly Arg Phe Ser His Ala Arg Ala Asn Val Ala Ala
225 230 235 240
Leu Phe Trp Thr Ser Phe Tyr His Phe Ser Glu Lys Asp Arg Leu Tyr
245 250 255
Ile Ala Leu Pro Leu Tyr His Ser Ala Gly Ala Val Leu Gly Ile Cys
260 265 270
Val Ala Trp Val Thr Gly Ala Thr Val Val Leu Ala Arg Lys Phe Ser
275 280 285
Thr Thr Ser Phe Trp Asp Glu Cys Arg Ala Asn Lys Val Thr Val Ile
290 295 300
Gln Tyr Ile Gly Glu Ile Cys Arg Tyr Leu Leu Asn Ala Pro Pro Ser
305 310 315 320
Pro Leu Asp Lys Thr His Thr Ile Arg Met Ala His Gly Asn Gly Met
325 330 335
Arg Pro Asp Val Trp Asn Arg Phe Arg Asp Arg Phe Gly Ile Pro Leu
340 345 350
Ile Gly Glu Trp Tyr Ala Ser Thr Glu Gly Thr Gly Ile Leu Thr Asn
355 360 365
Tyr Asn Thr Gly Pro Asn Gly Ala Gly Ala Ile Gly Tyr Arg Gly Ser
370 375 380
Leu Ala Arg Thr Val Asp Lys Gly Leu Lys Ile Ala Lys Phe Asp Ile
385 390 395 400
Gln Thr Glu Glu Leu Ile Arg Asp Lys Asn Gly Arg Cys Ile Glu Cys
405 410 415
Val Ala Asp Glu Pro Gly Glu Leu Leu Thr Met Ile Asp Ser Ser Asp
420 425 430
Pro Thr Arg Ala Phe Gln Gly Tyr His Lys Asn Ala Gly Ala Asn Ser
435 440 445
Lys Lys Val Val Gln Asp Ala Phe Ser Val Gly Asp Gln Tyr Phe Arg
450 455 460
Thr Gly Asp Ile Leu Arg Arg Asp Ala Asp Gly Tyr Phe Tyr Phe Gly
465 470 475 480
Asp Arg Val Gly Asp Thr Phe Arg Trp Lys Ser Glu Asn Val Ser Thr
485 490 495
Ala Glu Val Ser Glu Val Leu Ser Ala Tyr Pro Asp Cys Ile Glu Val
500 505 510
Asn Val Tyr Gly Val Gln Val Pro Gly His Asp Gly Arg Ala Gly Met
515 520 525
Ala Ala Ile Val Ser Lys Asp Thr Met Asn Trp Asp Ser Phe Ala Lys
530 535 540
Phe Ala Leu Lys Asn Leu Pro Lys Tyr Ser Val Pro Ile Phe Ile Arg
545 550 555 560
Lys Val Pro Glu Met Glu Ile Thr Gly Thr Phe Lys Gln Arg Lys Val
565 570 575
Glu Leu Val Asn Glu Gly Met Asp Pro Ser Lys Ile Lys Asp Glu Met
580 585 590
Leu Trp Leu Asp Gly His Ser Tyr Arg Pro Phe Lys Glu Ala Glu His
595 600 605
Thr Arg Val Val Ser Gly Lys Ala Arg Leu
610 615
<210> 3
<211> 1857
<212> DNA
<213> Mortierella alpina
<400> 3
atggatgctg tccctgcagt tgctgctgcg gccatccccg cagccatgta tgtcggctcc 60
aagcttgcaa tcccccgtga tgtcaagtta gctaaaggcc tagtcagtgc caagctaggt 120
tacaggtcct acgagaagaa cgactcgatc aatatctctt atcgttttga agagacctgt 180
aagaagcacc ctcatcgcga agctttggtg tttgaaggca aatcgtacac cttccaggac 240
atccagcgag aatcgaatag ggtgggacac tggctgttgt ccaaaggcgt caagcgagga 300
gagatcgtgt cgctcttcat gcaaaataag ccagagtttc tcttcttctg gcttggactc 360
aacaagatcg gcgctacggg agcattcatc aacacgaacc tctcgggcaa acctctgacg 420
cactcattgc gtaccgcgac agcatccatt ctgattatgg atgcggaact gccgacgccc 480
atttatagtg tcctcgatga agtccttgag atgggatatc agatatattc ctacggagga 540
tcccagcaac acgcctttgc tacacaagtt gaactttctc aaatctcgga tgcggccttg 600
cccaagagtc tgcgaaggaa aaccactgca aatgatattg ccatgttgat ttacacctcc 660
ggaacgacgg gtttgcccaa agctggacgg ttctcccatg ctcgagccaa cgttgccgca 720
cttttctgga cgtctttcta ccacttcagc gaaaaagacc gcctgtacat cgccttgcct 780
ctttaccaca gtgctggagc tgtccttgga atatgtgtgg cctgggtcac cggtgctacg 840
gtggtcctgg cgcgcaagtt ttcaactact tccttctggg acgaatgcag ggccaacaag 900
gtcaccgtga tccagtatat tggagaaatc tgccgatact tactgaatgc tcctccttct 960
cccttggaca agacacacac gatccgaatg gcgcatggca acggcatgcg tccggatgta 1020
tggaacagat tcagagatcg tttcggcatc cctttgatcg gagaatggta tgcaagcact 1080
gagggcaccg gaatcttgac aaactataac acaggaccca atggcgctgg tgcgatagga 1140
tacagaggct ccttggccag aactgtcgat aagggtctga agattgcgaa gttcgacatc 1200
caaaccgagg aacttattcg tgacaaaaat ggtcgatgca ttgagtgtgt cgcagatgag 1260
cccggcgagc tcttgacaat gattgattca agtgatccca ctcgcgcttt ccaagggtac 1320
cataaaaatg caggtgcaaa ctccaagaaa gtcgtccagg atgcattcag tgttggcgac 1380
caatactttc gtactggtga catccttcgt cgcgacgctg atggctattt ctattttggc 1440
gatcgtgttg gagatacttt ccgctggaaa tctgaaaacg tgtcaactgc ggaggtttct 1500
gaggtgctct cagcataccc ggactgcatc gaggtcaacg tttatggcgt tcaagtccct 1560
ggacacgacg gccgcgcagg catggctgcc attgtctcca aggacaccat gaactgggat 1620
agtttcgcca agtttgcact caaaaatctg ccgaagtact ctgtgccgat tttcatccgc 1680
aaggtcccag agatggagat tacgggaacg ttcaagcaac gaaaggttga actggtgaac 1740
gagggcatgg acccgagcaa gatcaaagac gaaatgctgt ggttggatgg gcactcctac 1800
cggcccttca aagaggcgga gcatactaga gtcgtcagcg gcaaagccag gctttga 1857
<210> 4
<211> 2066
<212> DNA
<213> Mortierella alpina
<400> 4
gctctttttt gttctgttct ttgccacccc actctgctgt gcctctccac tccccctgcc 60
cgtcgaacgt tcttctgtca ctttgcacag cagtatctcc tctgatctcg cttgrttata 120
ttccctctaa tctcgtttgg ttatattccc tctgatctcg ctcggttata ttcttcagat 180
atggatgctg tccctgcagt tgctgctgcg gccatccccg cagccatgta tgtcggctcc 240
aagcttgcaa tcccccgtga tgtcaagtta gctaaaggcc tagtcagtgc caagctaggt 300
tacaggtcct acgagaagaa cgactcgatc aatatctctt atcgttttga agagacctgt 360
aagaagcacc ctcatcgcga agctttggtg tttgaaggca aatcgtacac cttccaggac 420
atccagcgag aatcgaatag ggtgggacac tggctgttgt ccaaaggcgt caagcgagga 480
gagatcgtgt cgctcttcat gcaaaataag ccagagtttc tcttcttctg gcttggactc 540
aacaagatcg gcgctacggg agcattcatc aacacgaacc tctcgggcaa acctctgacg 600
cactcattgc gtaccgcgac agcatccatt ctgattatgg atgcggaact gccgacgccc 660
atttatagtg tcctcgatga agtccttgag atgggatatc agatatattc ctacggagga 720
tcccagcaac acgcctttgc tacacaagtt gaactttctc aaatctcgga tgcggccttg 780
cccaagagtc tgcgaaggaa aaccactgca aatgatattg ccatgttgat ttacacctcc 840
ggaacgacgg gtttgcccaa agctggacgg ttctcccatg ctcgagccaa cgttgccgca 900
cttttctgga cgtctttcta ccacttcagc gaaaaagacc gcctgtacat cgccttgcct 960
ctttaccaca gtgctggagc tgtccttgga atatgtgtgg cctgggtcac cggtgctacg 1020
gtggtcctgg cgcgcaagtt ttcaactact tccttctggg acgaatgcag ggccaacaag 1080
gtcaccgtga tccagtatat tggagaaatc tgccgatact tactgaatgc tcctccttct 1140
cccttggaca agacacacac gatccgaatg gcgcatggca acggcatgcg tccggatgta 1200
tggaacagat tcagagatcg tttcggcatc cctttgatcg gagaatggta tgcaagcact 1260
gagggcaccg gaatcttgac aaactataac acaggaccca atggcgctgg tgcgatagga 1320
tacagaggct ccttggccag aactgtcgat aagggtctga agattgcgaa gttcgacatc 1380
caaaccgagg aacttattcg tgacaaaaat ggtcgatgca ttgagtgtgt cgcagatgag 1440
cccggcgagc tcttgacaat gattgattca agtgatccca ctcgcgcttt ccaagggtac 1500
cataaaaatg caggtgcaaa ctccaagaaa gtcgtccagg atgcattcag tgttggcgac 1560
caatactttc gtactggtga catccttcgt cgcgacgctg atggctattt ctattttggc 1620
gatcgtgttg gagatacttt ccgctggaaa tctgaaaacg tgtcaactgc ggaggtttct 1680
gaggtgctct cagcataccc ggactgcatc gaggtcaacg tttatggcgt tcaagtccct 1740
ggacacgacg gccgcgcagg catggctgcc attgtctcca aggacaccat gaactgggat 1800
agtttcgcca agtttgcact caaaaatctg ccgaagtact ctgtgccgat tttcatccgc 1860
aaggtcccag agatggagat tacgggaacg ttcaagcaac gaaaggttga actggtgaac 1920
gagggcatgg acccgagcaa gatcaaagac gaaatgctgt ggttggatgg gcactcctac 1980
cggcccttca aagaggcgga gcatactaga gtcgtcagcg gcaaagccag gctttgacga 2040
ataaaattat ttcgttttgt ccgttg 2066
<210> 5
<211> 2278
<212> DNA
<213> Mortierella alpina
<400> 5
atggatgctg tccctgcagt tgctgctgcg gccatccccg cagccatgta tgtcggctcc 60
aagcttgcaa tcccccgtga tgtcaagtta gctaaaggcc tagtcagtgc caagctaggt 120
tacaggtcct acgagaagaa cgactcgatc aatatctctt atcgttttga agagacctgt 180
aagaagcacc ctcatcgcga agctttggtg tttgaaggca aatcgtacac cttccaggac 240
atccagcgag gtaacaagaa aaacaattgt ccaaagtgac agtcgaacgc atccgaaatt 300
tttactcaag ataaattgga tcatcgcacc acacccctcc gtcgatttca ctaacccttg 360
acttggaatg tagaatcgaa tagggtggga cactggctgt tgtccaaagg cgtcaagcga 420
ggagagatcg tgtcgctctt catgcaaaat aagccagagt ttctcttctt ctggcttgga 480
ctcaacaaga tcggcgctac gggagcattc atcaacacga acctctcggg caaacctctg 540
acgcactcat tgcgtaccgc gacagcatcc attctgatta tggatgcgga actgccgacg 600
cccatttata gtgtcctcga tgaagtcctt gagatgggat atcagatata ttcctacgga 660
ggatcccagc aacacgcctt tgctacacaa gttgaacttt ctcaaatctc ggatgcggcc 720
ttgcccaaga gtctgcgaag gaaaaccact gcaaatgata ttgccatgtt gatttacacc 780
tccggaacga cgggtttgcc caaagctgga cggttctccc atgctcgagc caacggtagg 840
attatacccc ccctcctccc cccccccctt ttttttcatt tgctgtgaag ttattagctg 900
ttccactagc atattgactc atattcacgt tccttttaca cgtcgggatc cagttgccgc 960
acttttctgg acgtctttct accacttcag cgaaaaagac cgcctgtaca tcgccttgcc 1020
tctttaccac agtgctggag ctgtccttgg aatatgtgtg gcctgggtca ccggtgctac 1080
ggtggtcctg gcgcgcaagt tttcaactac ttccttctgg gacgaatgca gggccaacaa 1140
ggtcaccgtg atccagtata ttggagaaat ctgccgatac ttactgaatg ctcctccttc 1200
tcccttggac aagacacaca cgatccgaat ggcgcatggc aacggcatgc gtccggatgt 1260
atggaacaga ttcagagatc gtttcggcat ccctttgatc ggagaatggt atgcaagcac 1320
tgagggcacc ggaatcttga caaactataa cacaggaccc aatggcgctg gtgcgatagg 1380
atacagaggc tccttggcca gaactgtcga taagggtctg aagattgcga agttcgacat 1440
ccaaaccgag gaacttattc gtgacaaaaa tggtcgatgc attgaggtaa agttgacagt 1500
attaagttga acatattcca cagtaccctt tgtcttcggt gtccaaaata ctgactactt 1560
gcttgatgcc ccttcaagtg tgtcgcagat gagcccggcg agctcttgac aatgattgat 1620
tcaagtgatc ccactcgcgc tttccaaggg taccataaaa atgcaggtgc aaactccaag 1680
aaagtcgtcc aggatgcatt cagtgttggt aggtgtaatc ttcaccttgc gtgccttcaa 1740
cagcaaactt tgtgatccgc gctgactcga tgaccctgtc ctgcctacat ttctaggcga 1800
ccaatacttt cgtactggtg acatccttcg tcgcgacgct gatggctatt tctattttgg 1860
cgatcgtgtt ggagatactt tccgctggaa atctgaaaac gtgtcaactg cggaggtttc 1920
tgaggtgctc tcagcatacc cggactgcat cgaggtcaac gtttatggcg ttcaagtccc 1980
tggacacgac ggccgcgcag gcatggctgc cattgtctcc aaggacacca tgaactggga 2040
tagtttcgcc aagtttgcac tcaaaaatct gccgaagtac tctgtgccga ttttcatccg 2100
caaggtccca gagatggaga ttacgggaac gttcaagcaa cgaaaggttg aactggtgaa 2160
cgagggcatg gacccgagca agatcaaaga cgaaatgctg tggttggatg ggcactccta 2220
ccggcccttc aaagaggcgg agcatactag agtcgtcagc ggcaaagcca ggctttga 2278
<210> 6
<211> 1926
<212> DNA
<213> Mortierella alpina
<400> 6
atggcaagta ccaaatcact aaggacttgg cgcttgttcg cgttggtctc catgcacgca 60
aaagacttga ggccttggtc gagaatcggg actgcagtct ttacaacagg ttcgaggaac 120
aatgccagat ccggcctttc tctgttgccc ttgtttttga gaacacgtct tacacctgga 180
gagacttgga gctggcgtcc aacaggatgg cccattggtt tgttgctcaa ggaatccaaa 240
aaaaaggagc gtgtggcgat gatgatgcat aactcgcctc tgttcattat cacctggctg 300
gcaatgctca agatcatggt tgtacctgct tttatcaata accagattgc aggacctgtt 360
ctggttcatt ctcttaaagt ggccgacgcc aagtttctct tgttcgatta cgagttggca 420
cctgtcatcc aaaagtcgct caatgagatc aaggacatgg gttacaatct ctacactgtc 480
acacccaagg atcaagttct aggtcaactt tacgccaatc tgcccgaggc tgctcgtcag 540
gtgttggatg aggctccttc attctttggt tatgtcgaat ggcagaacct cagtaccgaa 600
ggtttctcga acgagagtcg tcaggaggtg gtgatctccg accccgcagc cttgatttac 660
accagcggga ccacgggatt ccccaaggct gctatcatgg accatggacg ttgcaacttg 720
gcttcgatct cttatggcac tctatgcggc atcaaaccag agaacaaggt ttacatcaca 780
ttgccgctct atcattctgc tggagccatc attggtctgg gccagagctt caccagcgga 840
tgcaccattg tgctggcgcg aaagttctcc gtgacaaagt tttggcgtga ttgcgttgag 900
tacgacgtaa ctcattttca gtacattggc gaactctgcc gctaccttct aaatgccccc 960
gaaagtccac tggacaaaag gcataaggtt cggatggcgt ttggcaacgg aatgcgcccg 1020
gatgtttggg caaagtttca ggaacgattc aatatcccca ttattgttga gtactacgcc 1080
atgagcgaag gaacatcgtc gcttttgaat gtggccagga acaagcgcga ccaaggtgcg 1140
gtgggattcc gtggccccgt cgtgagggcc ttgacgcctc ccgttcaact ggtcaaggtg 1200
gactttgaca cggaggagct gatccgcgat aagaagacgg gactttgcgt cctatgccag 1260
cctggtgaga ttggagaact ggtcacgcta gccgacaaca agacgactgg cgcacgctat 1320
gctgggtatt tcaatcagcc agaggtttcg aaggcaaggc tggtccagaa cgtggtagtg 1380
aaggacgaca tctacttccg gacgggtgac ctcttgtact ccaaggacca gtactggtac 1440
tttgctgatc gcgcaggaga cacgtaccgg tggaaaggag agaacgtgtc gacagccgag 1500
attgcagaca ctatcggccg tgttgagggc gtggctagtt gtactgttta tggcgtatcg 1560
gtcccgggca tggatggacg cgcgggcatg gctgctttgg tgctcaagaa ctcgattgtg 1620
cagatggcag gtggaagcca ggcaaagttc catgtggatg aggctgcgct gaacgcgttt 1680
ttgcgtgact tgagcaagga tgtggtcaaa aaactgccgg cgtatgcgat tcctcggttc 1740
ttgcgcattg cagagcagga actggagacg acgggcacgt tcaagaacaa gaaggtggag 1800
ctgaagaagg aagggttcga cctcggtaag gtcaaggagc ggctgtactg gtggacaccc 1860
aagggtgaat atgccccttt tggcgtggcg gagaacgagc agatcctcgc aggacgcgct 1920
cgtctt 1926
<210> 7
<211> 642
<212> PRT
<213> Mortierella alpina
<400> 7
Met Ala Ser Thr Lys Ser Leu Arg Thr Trp Arg Leu Phe Ala Leu Val
1 5 10 15
Ser Met His Ala Lys Asp Leu Arg Pro Trp Ser Arg Ile Gly Thr Ala
20 25 30
Val Phe Thr Thr Gly Ser Arg Asn Asn Ala Arg Ser Gly Leu Ser Leu
35 40 45
Leu Pro Leu Phe Leu Arg Thr Arg Leu Thr Pro Gly Glu Thr Trp Ser
50 55 60
Trp Arg Pro Thr Gly Trp Pro Ile Gly Leu Leu Leu Lys Glu Ser Lys
65 70 75 80
Lys Lys Glu Arg Val Ala Met Met Met His Asn Ser Pro Leu Phe Ile
85 90 95
Ile Thr Trp Leu Ala Met Leu Lys Ile Met Val Val Pro Ala Phe Ile
100 105 110
Asn Asn Gln Ile Ala Gly Pro Val Leu Val His Ser Leu Lys Val Ala
115 120 125
Asp Ala Lys Phe Leu Leu Phe Asp Tyr Glu Leu Ala Pro Val Ile Gln
130 135 140
Lys Ser Leu Asn Glu Ile Lys Asp Met Gly Tyr Asn Leu Tyr Thr Val
145 150 155 160
Thr Pro Lys Asp Gln Val Leu Gly Gln Leu Tyr Ala Asn Leu Pro Glu
165 170 175
Ala Ala Arg Gln Val Leu Asp Glu Ala Pro Ser Phe Phe Gly Tyr Val
180 185 190
Glu Trp Gln Asn Leu Ser Thr Glu Gly Phe Ser Asn Glu Ser Arg Gln
195 200 205
Glu Val Val Ile Ser Asp Pro Ala Ala Leu Ile Tyr Thr Ser Gly Thr
210 215 220
Thr Gly Phe Pro Lys Ala Ala Ile Met Asp His Gly Arg Cys Asn Leu
225 230 235 240
Ala Ser Ile Ser Tyr Gly Thr Leu Cys Gly Ile Lys Pro Glu Asn Lys
245 250 255
Val Tyr Ile Thr Leu Pro Leu Tyr His Ser Ala Gly Ala Ile Ile Gly
260 265 270
Leu Gly Gln Ser Phe Thr Ser Gly Cys Thr Ile Val Leu Ala Arg Lys
275 280 285
Phe Ser Val Thr Lys Phe Trp Arg Asp Cys Val Glu Tyr Asp Val Thr
290 295 300
His Phe Gln Tyr Ile Gly Glu Leu Cys Arg Tyr Leu Leu Asn Ala Pro
305 310 315 320
Glu Ser Pro Leu Asp Lys Arg His Lys Val Arg Met Ala Phe Gly Asn
325 330 335
Gly Met Arg Pro Asp Val Trp Ala Lys Phe Gln Glu Arg Phe Asn Ile
340 345 350
Pro Ile Ile Val Glu Tyr Tyr Ala Met Ser Glu Gly Thr Ser Ser Leu
355 360 365
Leu Asn Val Ala Arg Asn Lys Arg Asp Gln Gly Ala Val Gly Phe Arg
370 375 380
Gly Pro Val Val Arg Ala Leu Thr Pro Pro Val Gln Leu Val Lys Val
385 390 395 400
Asp Phe Asp Thr Glu Glu Leu Ile Arg Asp Lys Lys Thr Gly Leu Cys
405 410 415
Val Leu Cys Gln Pro Gly Glu Ile Gly Glu Leu Val Thr Leu Ala Asp
420 425 430
Asn Lys Thr Thr Gly Ala Arg Tyr Ala Gly Tyr Phe Asn Gln Pro Glu
435 440 445
Val Ser Lys Ala Arg Leu Val Gln Asn Val Val Val Lys Asp Asp Ile
450 455 460
Tyr Phe Arg Thr Gly Asp Leu Leu Tyr Ser Lys Asp Gln Tyr Trp Tyr
465 470 475 480
Phe Ala Asp Arg Ala Gly Asp Thr Tyr Arg Trp Lys Gly Glu Asn Val
485 490 495
Ser Thr Ala Glu Ile Ala Asp Thr Ile Gly Arg Val Glu Gly Val Ala
500 505 510
Ser Cys Thr Val Tyr Gly Val Ser Val Pro Gly Met Asp Gly Arg Ala
515 520 525
Gly Met Ala Ala Leu Val Leu Lys Asn Ser Ile Val Gln Met Ala Gly
530 535 540
Gly Ser Gln Ala Lys Phe His Val Asp Glu Ala Ala Leu Asn Ala Phe
545 550 555 560
Leu Arg Asp Leu Ser Lys Asp Val Val Lys Lys Leu Pro Ala Tyr Ala
565 570 575
Ile Pro Arg Phe Leu Arg Ile Ala Glu Gln Glu Leu Glu Thr Thr Gly
580 585 590
Thr Phe Lys Asn Lys Lys Val Glu Leu Lys Lys Glu Gly Phe Asp Leu
595 600 605
Gly Lys Val Lys Glu Arg Leu Tyr Trp Trp Thr Pro Lys Gly Glu Tyr
610 615 620
Ala Pro Phe Gly Val Ala Glu Asn Glu Gln Ile Leu Ala Gly Arg Ala
625 630 635 640
Arg Leu
<210> 8
<211> 1929
<212> DNA
<213> Mortierella alpina
<400> 8
atggcaagta ccaaatcact aaggacttgg cgcttgttcg cgttggtctc catgcacgca 60
aaagacttga ggccttggtc gagaatcggg actgcagtct ttacaacagg ttcgaggaac 120
aatgccagat ccggcctttc tctgttgccc ttgtttttga gaacacgtct tacacctgga 180
gagacttgga gctggcgtcc aacaggatgg cccattggtt tgttgctcaa ggaatccaaa 240
aaaaaggagc gtgtggcgat gatgatgcat aactcgcctc tgttcattat cacctggctg 300
gcaatgctca agatcatggt tgtacctgct tttatcaata accagattgc aggacctgtt 360
ctggttcatt ctcttaaagt ggccgacgcc aagtttctct tgttcgatta cgagttggca 420
cctgtcatcc aaaagtcgct caatgagatc aaggacatgg gttacaatct ctacactgtc 480
acacccaagg atcaagttct aggtcaactt tacgccaatc tgcccgaggc tgctcgtcag 540
gtgttggatg aggctccttc attctttggt tatgtcgaat ggcagaacct cagtaccgaa 600
ggtttctcga acgagagtcg tcaggaggtg gtgatctccg accccgcagc cttgatttac 660
accagcggga ccacgggatt ccccaaggct gctatcatgg accatggacg ttgcaacttg 720
gcttcgatct cttatggcac tctatgcggc atcaaaccag agaacaaggt ttacatcaca 780
ttgccgctct atcattctgc tggagccatc attggtctgg gccagagctt caccagcgga 840
tgcaccattg tgctggcgcg aaagttctcc gtgacaaagt tttggcgtga ttgcgttgag 900
tacgacgtaa ctcattttca gtacattggc gaactctgcc gctaccttct aaatgccccc 960
gaaagtccac tggacaaaag gcataaggtt cggatggcgt ttggcaacgg aatgcgcccg 1020
gatgtttggg caaagtttca ggaacgattc aatatcccca ttattgttga gtactacgcc 1080
atgagcgaag gaacatcgtc gcttttgaat gtggccagga acaagcgcga ccaaggtgcg 1140
gtgggattcc gtggccccgt cgtgagggcc ttgacgcctc ccgttcaact ggtcaaggtg 1200
gactttgaca cggaggagct gatccgcgat aagaagacgg gactttgcgt cctatgccag 1260
cctggtgaga ttggagaact ggtcacgcta gccgacaaca agacgactgg cgcacgctat 1320
gctgggtatt tcaatcagcc agaggtttcg aaggcaaggc tggtccagaa cgtggtagtg 1380
aaggacgaca tctacttccg gacgggtgac ctcttgtact ccaaggacca gtactggtac 1440
tttgctgatc gcgcaggaga cacgtaccgg tggaaaggag agaacgtgtc gacagccgag 1500
attgcagaca ctatcggccg tgttgagggc gtggctagtt gtactgttta tggcgtatcg 1560
gtcccgggca tggatggacg cgcgggcatg gctgctttgg tgctcaagaa ctcgattgtg 1620
cagatggcag gtggaagcca ggcaaagttc catgtggatg aggctgcgct gaacgcgttt 1680
ttgcgtgact tgagcaagga tgtggtcaaa aaactgccgg cgtatgcgat tcctcggttc 1740
ttgcgcattg cagagcagga actggagacg acgggcacgt tcaagaacaa gaaggtggag 1800
ctgaagaagg aagggttcga cctcggtaag gtcaaggagc ggctgtactg gtggacaccc 1860
aagggtgaat atgccccttt tggcgtggcg gagaacgagc agatcctcgc aggacgcgct 1920
cgtctttga 1929
<210> 9
<211> 2135
<212> DNA
<213> Mortierella alpina
<400> 9
atccgcccat ccgctctctt gccactgatc tcaaagcgtg atccaaaggt cattcttagg 60
cagcactcac gcagctactt agaactctac ccacatatcc cttattgata caatggctcc 120
cgtcgctgca ctcgccgccg ctctggcggc aggatactat ctcaatggca agtaccaaat 180
cactaaggac ttggcgcttg ttcgcgttgg tctccatgca cgcaaaagac ttgaggcctt 240
ggtcgagaat cgggactgca gtctttacaa caggttcgag gaacaatgcc agatccggcc 300
tttctctgtt gcccttgttt ttgagaacac gtcttacacc tggagagact tggagctggc 360
gtccaacagg atggcccatt ggtttgttgc tcaaggaatc caaaaaaaag gagcgtgtgg 420
cgatgatgat gcataactcg cctctgttca ttatcacctg gctggcaatg ctcaagatca 480
tggttgtacc tgcttttatc aataaccaga ttgcaggacc tgttctggtt cattctctta 540
aagtggccga cgccaagttt ctcttgttcg attacgagtt ggcacctgtc atccaaaagt 600
cgctcaatga gatcaaggac atgggttaca atctctacac tgtcacaccc aaggatcaag 660
ttctaggtca actttacgcc aatctgcccg aggctgctcg tcaggtgttg gatgaggctc 720
cttcattctt tggttatgtc gaatggcaga acctcagtac cgaaggtttc tcgaacgaga 780
gtcgtcagga ggtggtgatc tccgaccccg cagccttgat ttacaccagc gggaccacgg 840
gattccccaa ggctgctatc atggaccatg gacgttgcaa cttggcttcg atctcttatg 900
gcactctatg cggcatcaaa ccagagaaca aggtttacat cacattgccg ctctatcatt 960
ctgctggagc catcattggt ctgggccaga gcttcaccag cggatgcacc attgtgctgg 1020
cgcgaaagtt ctccgtgaca aagttttggc gtgattgcgt tgagtacgac gtaactcatt 1080
ttcagtacat tggcgaactc tgccgctacc ttctaaatgc ccccgaaagt ccactggaca 1140
aaaggcataa ggttcggatg gcgtttggca acggaatgcg cccggatgtt tgggcaaagt 1200
ttcaggaacg attcaatatc cccattattg ttgagtacta cgccatgagc gaaggaacat 1260
cgtcgctttt gaatgtggcc aggaacaagc gcgaccaagg tgcggtggga ttccgtggcc 1320
ccgtcgtgag ggccttgacg cctcccgttc aactggtcaa ggtggacttt gacacggagg 1380
agctgatccg cgataagaag acgggacttt gcgtcctatg ccagcctggt gagattggag 1440
aactggtcac gctagccgac aacaagacga ctggcgcacg ctatgctggg tatttcaatc 1500
agccagaggt ttcgaaggca aggctggtcc agaacgtggt agtgaaggac gacatctact 1560
tccggacggg tgacctcttg tactccaagg accagtactg gtactttgct gatcgcgcag 1620
gagacacgta ccggtggaaa ggagagaacg tgtcgacagc cgagattgca gacactatcg 1680
gccgtgttga gggcgtggct agttgtactg tttatggcgt atcggtcccg ggcatggatg 1740
gacgcgcggg catggctgct ttggtgctca agaactcgat tgtgcagatg gcaggtggaa 1800
gccaggcaaa gttccatgtg gatgaggctg cgctgaacgc gtttttgcgt gacttgagca 1860
aggatgtggt caaaaaactg ccggcgtatg cgattcctcg gttcttgcgc attgcagagc 1920
aggaactgga gacgacgggc acgttcaaga acaagaaggt ggagctgaag aaggaagggt 1980
tcgacctcgg taaggtcaag gagcggctgt actggtggac acccaagggt gaatatgccc 2040
cttttggcgt ggcggagaac gagcagatcc tcgcaggacg cgctcgtctt tgagcgatgt 2100
ttgtcaatga agtcatcggc atcatcatca tcatc 2135
<210> 10
<211> 3041
<212> DNA
<213> Mortierella alpina
<220>
<221> misc_feature
<222> (118)..(459)
<223> n is a, c, g, or t
<400> 10
atggcaagta ccaaatcact aaggacttgg cgcttgttcg cgttggtctc catgcacgca 60
aaaggtatga acgatgcact tgggggacgc atctgtctca atgtgatttg cttgttcnnn 120
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 180
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 240
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 300
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 360
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 420
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnc gtctactttt tttttttttt 480
tttttttgag agagaaaggt cgaatgtggg gaccgaacct attttttttc cgtgcctttt 540
aggtttgttg cttcagcgtt cttttgagct gatatctttt cgccactctt gcatacctta 600
gacttgaggc cttggtcgag aatcgggact gcagtcttta caacaggttc gaggaacaat 660
gccagatccg gcctttctct gttgcccttg tttttgagaa cacgtcttac acctggagag 720
acttggagct gggtatgtgc agtaggattt tttggacgcc tgatgctgca ttctgtgata 780
gaggacatac attaaataat tgatatcatt tcgtctgtcg acctgtctgt ctatcgatat 840
acagcgtcca acaggatggt aagttggcaa ctgcatacaa gtacttcgtg ctctttatca 900
tgcgttactc acgcttcatt gcctcaatgt ttcctttgaa ctaggcccat tggtttgttg 960
ctcaaggaat ccaaaaaaaa ggagcgtgtg gcgatgatga tgcataactc gcctctgttc 1020
attatcacct ggctggcaat gctcaagatc atggttgtac ctgcttttat caataaccag 1080
attgcaggac ctgttctggt tcattctctt aaagtggccg acgccaagtt tctcttgttc 1140
gattacgagt tggcacctgt catccaaaag tcgctcaatg agatcaagga catgggttac 1200
aatctctaca ctgtcacacc caaggatcaa gttctaggtc aactttacgc caatctgccc 1260
gaggctgctc gtcaggtgtt ggatgaggct ccttcattct ttggttatgt cgaatggcag 1320
aacctcagta ccgaaggttt ctcgaacgag agtcgtcagg aggtggtgat ctccgacccc 1380
gcagccttga tttacaccag cgggaccacg ggattcccca aggctgctat catggaccat 1440
ggacgttgca actgtaagca atcgcatagg atcgatagcg ctgaatggct ggcgagtgga 1500
tgcaaatggt cgagatgctt accattatcg tggtgtgcct ttttatagtg gcttcgatct 1560
cttatggcac tctatgcggc atcaaaccag agaacaaggt ttacatcaca ttgccgctct 1620
atcattctgc tggaggtacg tgcttccatc tcaccctcaa catctcttac gacggtttga 1680
tcctgttctt acactcatta cttctgggca tgggaacaaa gccatcattg gtctgggcca 1740
gagcttcacc agcggatgca ccattgtgct ggcgcgaaag ttctccgtga caaagttttg 1800
gcgtgattgc gttgagtacg acgtaactca ttttcaggta caagtcctat ccaatggtct 1860
acataccgtc cttgtgtatt ttcaacgcgc accgccacta acccgctttt atatgtatac 1920
ccgcagtaca ttggcgaact ctgccgctac cttctaaatg cccccgaaag tccactggac 1980
aaaaggcata aggttcggat ggcgtttggc aacggaatgc gcccggatgt ttgggcaaag 2040
tttcaggaac gattcaatat ccccattatt gttgagtact acgccatgag cgaaggaaca 2100
tcgtcgcttt tgaatgtggc caggaacaag cgcgaccaag gtgcggtggg attccgtggc 2160
cccgtcgtga ggtatgcggc atctgggcgc tttagttctt cgtgttcaat ggtttcatta 2220
taacatcttc agctcaactt ttgcccgtgc tttttccttt caattttgtt tccactaggg 2280
ccttgacgcc tcccgttcaa ctggtcaagg tggactttga cacggaggag ctgatccgcg 2340
ataagaagac gggactttgc gtcctatgcc agcctggtga gattggagaa ctggtcacgc 2400
tagccgacaa caagacgact ggcgcacgct atgctgggta tttcaatcag ccagaggttt 2460
cgaaggcaag gctggtccag aacgtggtag tgaaggacga catctacttc cggacgggtg 2520
acctcttgta ctccaaggac cagtactggt actttgctga tcgcgcagga gacacgtacc 2580
ggtggaaagg agagaacgtg tcgacagccg agattgcaga cactatcggc cgtgttgagg 2640
gcgtggctag ttgtactgtt tatggcgtat cggtcccggg catggatgga cgcgcgggca 2700
tggctgcttt ggtgctcaag aactcgattg tgcagatggc aggtggaagc caggcaaagt 2760
tccatgtgga tgaggctgcg ctgaacgcgt ttttgcgtga cttgagcaag gatgtggtca 2820
aaaaactgcc ggcgtatgcg attcctcggt tcttgcgcat tgcagagcag gaactggaga 2880
cgacgggcac gttcaagaac aagaaggtgg agctgaagaa ggaagggttc gacctcggta 2940
aggtcaagga gcggctgtac tggtggacac ccaagggtga atatgcccct tttggcgtgg 3000
cggagaacga gcagatcctc gcaggacgcg ctcgtctttg a 3041
<210> 11
<211> 1650
<212> DNA
<213> Mortierella alpina
<400> 11
atggaaacgg atgctcttac catcgctttg accatcgcca tcgccatcgt gctggctttg 60
gtcaaattca acgaaaaaga gcctgacctg catccgctcc tgctcgggca gcaatcgtct 120
gtcacgccca ttcggaacga gggcgagtcc gttatccata gatccaaaac ggtgccacac 180
gggacactgc tgacgaagcg cccgagcgag aaaatcaaga ctctgcacga tgtctggcag 240
actggagcag ctgtcaaccc agccggccga tcgttgatgt ttatgctgca gaaccagttt 300
gcgtttatcg aggccacgta tgagcaagtc aataggagga ttggcggctt cggaacaggt 360
ttcgtgaagg caacagggct aaagcccaag acggacacac cagtaggaat ctttatgccc 420
tactctcaag aatcgttcgt tgcccagcag gcattctatc gatacagctt tgttgctgtc 480
cccatccatg atctgaggaa caacgacctc ttggtggagg tagtagacca gaccaagctc 540
aaggccatca tagtctcaca aaaggtgctc ccgttattgc tgcaatctct gaaggagtgt 600
ccaaccatca agacaatcat catggcagga atctacatct cacaggagca gctggaaatg 660
gcagcacagc atggagtaaa gctgctcaaa ttcgcggcag tggaatatga gggatcctcg 720
actctgatgg agcctgttca gcctgatccg gaggatgttg ccatgatcaa ctataacaca 780
aagtcgtctt cgctctcgaa aggcgtcatg cttacccatg ccaacctgat cgcggcgatg 840
actgccttca cggagtcact tccggcaaaa aagcgtttct ccagcaaaga tcgtcttctc 900
tctcattttt ccaatggaga tgtcatctct gtcttcatgt cgagcgccat catcctgatg 960
ggaggttctt tggtctttcc atctggtttg atgaagaacg ttttgcatga ttcccaagct 1020
tctgcaccaa cgatctttgc aagcacaccc atcatcctgg aaaagattca cgaagcactt 1080
cagttgacgt atggccaagg ctccatgttc aggcgcggct ttgctgccaa attggccata 1140
cttcaagctg gacgaatcac tacaacaagc ctatgggact tgattggact gggcgaggtc 1200
cgcagcaaac ttggtggaaa ggttcgaatg gttgtaacaa cacatcctac caaacctgag 1260
acgctggatt atatcagagc cgcgatgggc atccatgtca ttaccactta cggcaggaca 1320
gagacgtcgg gcattgtgac agcccgcaac atgctggatt atgccaacgc acctcattta 1380
ggaccaccag tgggttgcaa cgaggttaag cttgtggacg atgttgcagc tggctttaca 1440
agtgcagacg agcccaaccc acgaggcgag atccttatcc gaggccccaa tgtgatgaaa 1500
ggttattaca agaagccggg tgccacttca acggctatcg atgaggaagg gtggttccat 1560
tcaggagagc tgggcacatt ccactccaac ggcactttag acgtgttggg caagaagaag 1620
aagacgaagt ctgcagttgg atcaccgtca 1650
<210> 12
<211> 550
<212> PRT
<213> Mortierella alpina
<400> 12
Met Glu Thr Asp Ala Leu Thr Ile Ala Leu Thr Ile Ala Ile Ala Ile
1 5 10 15
Val Leu Ala Leu Val Lys Phe Asn Glu Lys Glu Pro Asp Leu His Pro
20 25 30
Leu Leu Leu Gly Gln Gln Ser Ser Val Thr Pro Ile Arg Asn Glu Gly
35 40 45
Glu Ser Val Ile His Arg Ser Lys Thr Val Pro His Gly Thr Leu Leu
50 55 60
Thr Lys Arg Pro Ser Glu Lys Ile Lys Thr Leu His Asp Val Trp Gln
65 70 75 80
Thr Gly Ala Ala Val Asn Pro Ala Gly Arg Ser Leu Met Phe Met Leu
85 90 95
Gln Asn Gln Phe Ala Phe Ile Glu Ala Thr Tyr Glu Gln Val Asn Arg
100 105 110
Arg Ile Gly Gly Phe Gly Thr Gly Phe Val Lys Ala Thr Gly Leu Lys
115 120 125
Pro Lys Thr Asp Thr Pro Val Gly Ile Phe Met Pro Tyr Ser Gln Glu
130 135 140
Ser Phe Val Ala Gln Gln Ala Phe Tyr Arg Tyr Ser Phe Val Ala Val
145 150 155 160
Pro Ile His Asp Leu Arg Asn Asn Asp Leu Leu Val Glu Val Val Asp
165 170 175
Gln Thr Lys Leu Lys Ala Ile Ile Val Ser Gln Lys Val Leu Pro Leu
180 185 190
Leu Leu Gln Ser Leu Lys Glu Cys Pro Thr Ile Lys Thr Ile Ile Met
195 200 205
Ala Gly Ile Tyr Ile Ser Gln Glu Gln Leu Glu Met Ala Ala Gln His
210 215 220
Gly Val Lys Leu Leu Lys Phe Ala Ala Val Glu Tyr Glu Gly Ser Ser
225 230 235 240
Thr Leu Met Glu Pro Val Gln Pro Asp Pro Glu Asp Val Ala Met Ile
245 250 255
Asn Tyr Asn Thr Lys Ser Ser Ser Leu Ser Lys Gly Val Met Leu Thr
260 265 270
His Ala Asn Leu Ile Ala Ala Met Thr Ala Phe Thr Glu Ser Leu Pro
275 280 285
Ala Lys Lys Arg Phe Ser Ser Lys Asp Arg Leu Leu Ser His Phe Ser
290 295 300
Asn Gly Asp Val Ile Ser Val Phe Met Ser Ser Ala Ile Ile Leu Met
305 310 315 320
Gly Gly Ser Leu Val Phe Pro Ser Gly Leu Met Lys Asn Val Leu His
325 330 335
Asp Ser Gln Ala Ser Ala Pro Thr Ile Phe Ala Ser Thr Pro Ile Ile
340 345 350
Leu Glu Lys Ile His Glu Ala Leu Gln Leu Thr Tyr Gly Gln Gly Ser
355 360 365
Met Phe Arg Arg Gly Phe Ala Ala Lys Leu Ala Ile Leu Gln Ala Gly
370 375 380
Arg Ile Thr Thr Thr Ser Leu Trp Asp Leu Ile Gly Leu Gly Glu Val
385 390 395 400
Arg Ser Lys Leu Gly Gly Lys Val Arg Met Val Val Thr Thr His Pro
405 410 415
Thr Lys Pro Glu Thr Leu Asp Tyr Ile Arg Ala Ala Met Gly Ile His
420 425 430
Val Ile Thr Thr Tyr Gly Arg Thr Glu Thr Ser Gly Ile Val Thr Ala
435 440 445
Arg Asn Met Leu Asp Tyr Ala Asn Ala Pro His Leu Gly Pro Pro Val
450 455 460
Gly Cys Asn Glu Val Lys Leu Val Asp Asp Val Ala Ala Gly Phe Thr
465 470 475 480
Ser Ala Asp Glu Pro Asn Pro Arg Gly Glu Ile Leu Ile Arg Gly Pro
485 490 495
Asn Val Met Lys Gly Tyr Tyr Lys Lys Pro Gly Ala Thr Ser Thr Ala
500 505 510
Ile Asp Glu Glu Gly Trp Phe His Ser Gly Glu Leu Gly Thr Phe His
515 520 525
Ser Asn Gly Thr Leu Asp Val Leu Gly Lys Lys Lys Lys Thr Lys Ser
530 535 540
Ala Val Gly Ser Pro Ser
545 550
<210> 13
<211> 1653
<212> DNA
<213> Mortierella alpina
<400> 13
atggaaacgg atgctcttac catcgctttg accatcgcca tcgccatcgt gctggctttg 60
gtcaaattca acgaaaaaga gcctgacctg catccgctcc tgctcgggca gcaatcgtct 120
gtcacgccca ttcggaacga gggcgagtcc gttatccata gatccaaaac ggtgccacac 180
gggacactgc tgacgaagcg cccgagcgag aaaatcaaga ctctgcacga tgtctggcag 240
actggagcag ctgtcaaccc agccggccga tcgttgatgt ttatgctgca gaaccagttt 300
gcgtttatcg aggccacgta tgagcaagtc aataggagga ttggcggctt cggaacaggt 360
ttcgtgaagg caacagggct aaagcccaag acggacacac cagtaggaat ctttatgccc 420
tactctcaag aatcgttcgt tgcccagcag gcattctatc gatacagctt tgttgctgtc 480
cccatccatg atctgaggaa caacgacctc ttggtggagg tagtagacca gaccaagctc 540
aaggccatca tagtctcaca aaaggtgctc ccgttattgc tgcaatctct gaaggagtgt 600
ccaaccatca agacaatcat catggcagga atctacatct cacaggagca gctggaaatg 660
gcagcacagc atggagtaaa gctgctcaaa ttcgcggcag tggaatatga gggatcctcg 720
actctgatgg agcctgttca gcctgatccg gaggatgttg ccatgatcaa ctataacaca 780
aagtcgtctt cgctctcgaa aggcgtcatg cttacccatg ccaacctgat cgcggcgatg 840
actgccttca cggagtcact tccggcaaaa aagcgtttct ccagcaaaga tcgtcttctc 900
tctcattttt ccaatggaga tgtcatctct gtcttcatgt cgagcgccat catcctgatg 960
ggaggttctt tggtctttcc atctggtttg atgaagaacg ttttgcatga ttcccaagct 1020
tctgcaccaa cgatctttgc aagcacaccc atcatcctgg aaaagattca cgaagcactt 1080
cagttgacgt atggccaagg ctccatgttc aggcgcggct ttgctgccaa attggccata 1140
cttcaagctg gacgaatcac tacaacaagc ctatgggact tgattggact gggcgaggtc 1200
cgcagcaaac ttggtggaaa ggttcgaatg gttgtaacaa cacatcctac caaacctgag 1260
acgctggatt atatcagagc cgcgatgggc atccatgtca ttaccactta cggcaggaca 1320
gagacgtcgg gcattgtgac agcccgcaac atgctggatt atgccaacgc acctcattta 1380
ggaccaccag tgggttgcaa cgaggttaag cttgtggacg atgttgcagc tggctttaca 1440
agtgcagacg agcccaaccc acgaggcgag atccttatcc gaggccccaa tgtgatgaaa 1500
ggttattaca agaagccggg tgccacttca acggctatcg atgaggaagg gtggttccat 1560
tcaggagagc tgggcacatt ccactccaac ggcactttag acgtgttggg caagaagaag 1620
aagacgaagt ctgcagttgg atcaccgtca tga 1653
<210> 14
<211> 1753
<212> DNA
<213> Mortierella alpina
<400> 14
gcctactttg cgctcgcctc atcgacccaa aggcagcaat ggaaacggat gctcttacca 60
tcgctttgac catcgccatc gccatcgtgc tggctttggt caaattcaac gaaaaagagc 120
ctgacctgca tccgctcctg ctcgggcagc aatcgtctgt cacgcccatt cggaacgagg 180
gcgagtccgt tatccataga tccaaaacgg tgccacacgg gacactgctg acgaagcgcc 240
cgagcgagaa aatcaagact ctgcacgatg tctggcagac tggagcagct gtcaacccag 300
ccggccgatc gttgatgttt atgctgcaga accagtttgc gtttatcgag gccacgtatg 360
agcaagtcaa taggaggatt ggcggcttcg gaacaggttt cgtgaaggca acagggctaa 420
agcccaagac ggacacacca gtaggaatct ttatgcccta ctctcaagaa tcgttcgttg 480
cccagcaggc attctatcga tacagctttg ttgctgtccc catccatgat ctgaggaaca 540
acgacctctt ggtggaggta gtagaccaga ccaagctcaa ggccatcata gtctcacaaa 600
aggtgctccc gttattgctg caatctctga aggagtgtcc aaccatcaag acaatcatca 660
tggcaggaat ctacatctca caggagcagc tggaaatggc agcacagcat ggagtaaagc 720
tgctcaaatt cgcggcagtg gaatatgagg gatcctcgac tctgatggag cctgttcagc 780
ctgatccgga ggatgttgcc atgatcaact ataacacaaa gtcgtcttcg ctctcgaaag 840
gcgtcatgct tacccatgcc aacctgatcg cggcgatgac tgccttcacg gagtcacttc 900
cggcaaaaaa gcgtttctcc agcaaagatc gtcttctctc tcatttttcc aatggagatg 960
tcatctctgt cttcatgtcg agcgccatca tcctgatggg aggttctttg gtctttccat 1020
ctggtttgat gaagaacgtt ttgcatgatt cccaagcttc tgcaccaacg atctttgcaa 1080
gcacacccat catcctggaa aagattcacg aagcacttca gttgacgtat ggccaaggct 1140
ccatgttcag gcgcggcttt gctgccaaat tggccatact tcaagctgga cgaatcacta 1200
caacaagcct atgggacttg attggactgg gcgaggtccg cagcaaactt ggtggaaagg 1260
ttcgaatggt tgtaacaaca catcctacca aacctgagac gctggattat atcagagccg 1320
cgatgggcat ccatgtcatt accacttacg gcaggacaga gacgtcgggc attgtgacag 1380
cccgcaacat gctggattat gccaacgcac ctcatttagg accaccagtg ggttgcaacg 1440
aggttaagct tgtggacgat gttgcagctg gctttacaag tgcagacgag cccaacccac 1500
gaggcgagat ccttatccga ggccccaatg tgatgaaagg ttattacaag aagccgggtg 1560
ccacttcaac ggctatcgat gaggaagggt ggttccattc aggagagctg ggcacattcc 1620
actccaacgg cactttagac gtgttgggca agaagaagaa gacgaagtct gcagttggat 1680
caccgtcatg aaaggagatg ctgcatgtgc tacagaatat aaaaagggag aagatacgtt 1740
cggtaaccac atc 1753
<210> 15
<211> 2391
<212> DNA
<213> Mortierella alpina
<400> 15
atggaaacgg atgctcttac catcgctttg accatcgcca tcgccatcgt gctggctttg 60
gtcaaattca acgaaaaaga gcctgacctg catccgctcc tgctcgggca gcaatcgtct 120
gtcacgccca ttcggaacga gggcgagtcc gttatccata gatccaaaac ggtgccacac 180
gggacactgc tgacgaagcg cccgagcgag aaaatcaaga ctctgcacga tgtctggcag 240
actggagcag ctgtcaaccc agccggccga tcgttgatgt ttatgctgca gaaccagttt 300
gcgtttatcg aggtacgatg gacccgctgt agtaaccccg ctgtctcttg agcaatatcg 360
caggagtctc accattagag gattcattct ccttcgcata ggccacgtat ggtaacgtgt 420
gattcggtag cctttctgtc tgttgaagat gcggtgatgt ggatctctaa cagatcttgg 480
ttcaatggtg acacagagca agtcaatagg aggattggcg gcttcggaac aggtttcgtg 540
aaggcaacag ggctaaagcc caagacggac acaccagtag gaatctttat gccctactct 600
caaggtacgc gaacaagcgc gtgagtactg atccagcaac gcatagggac tgacgcgagt 660
gagccacgtg tttgaccttg caccgcgcct ctttactgta gaatcgttcg ttgcccagca 720
ggcattctat cgatacagct ttgttgctgt ccccatccat gatctgagga acaacgacct 780
cttggtggag gtagtagacc agaccaagct caaggccatc atagtctcac aaaaggtgct 840
cccgttattg ctgcaatctc tgaaggagtg tccaaccatc aagacaatca tcatggcagg 900
aatctacatc tcacaggagc agctggaaat ggcagcacag catggagtaa agctgctcaa 960
attcgcggca gtggaatatg agggatcctc gactctgatg gagcctgttc agcctggtat 1020
gtgaagcaaa agtcaaggaa atgcggttgc ttgatgttcg ctgcgatgtt ttgaccacca 1080
cgacctcttt taatagatcc ggaggatgtt gccatgatca actataacac aaagtcgtct 1140
tcggtatgga tgcttgtttt tcagtggtag ttttgtataa gcgggcatgg agatgattga 1200
gcttacttga agtactttcg cgctgcatca ttgatccgat agctctcgaa aggcgtcatg 1260
cttacccatg ccaacctgat cgcggcgatg actgccttca cggagtcact tccggcaaaa 1320
aagcgtttct ccagcaaaga tcgtcttctc tctcattttt ccaatggaga tgtcatctct 1380
gtcttcatgt cgagcgccat catcctgatg ggaggttctt tggtctttcc atctggtttg 1440
atgaagaacg ttttgcatga ttcccaagct tctgcaccaa cgatctttgc aaggtacaag 1500
atgttccagt gtgatctgtg gattgtctcg ttattcatgt gcaagatact tacggcgctg 1560
ttccatttat ttttgacccc tcctagcaca cccatcatcc tggaaaagat tcacgaagca 1620
cttcagttga cgtatggcca aggctccatg ttcaggcgcg gctttgctgc caaattggcc 1680
atacttcaag ctggacgaat cactacaaca agcctatggg acttgattgg actgggcgag 1740
gtccgcagca aacttggtgg aaaggttcga atggttgtaa caacacgtaa gtctcctttt 1800
ttaccatgcg ggcttacgta cttgcagcat gatattcgaa gatactaaca gtcttttcat 1860
gacgctcctg tagatcctac caaacctgag acgctggatt atatcagagc cgcgatgggc 1920
atccatgtca ttaccactta cggcaggaca gagacgtcgg gcattgtgac agcccgcaac 1980
atgctggatt atgccaacgc acctcattta ggaccaccag tgggttgcaa cgaggttaag 2040
cttgtggacg atgttgcagc tggctttaca agtgcagacg agcccaaccc acgaggcgag 2100
gtaaggagtg catatctctt gctgcttcat gggcgataaa aaggctcaaa tgccgttgat 2160
tctactctaa cagcgttatt ttattgttca acaatatttt gtgcctagat ccttatccga 2220
ggccccaatg tgatgaaagg ttattacaag aagccgggtg ccacttcaac ggctatcgat 2280
gaggaagggt ggttccattc aggagagctg ggcacattcc actccaacgg cactttagac 2340
gtgttgggca agaagaagaa gacgaagtct gcagttggat caccgtcatg a 2391
<210> 16
<211> 2064
<212> DNA
<213> Mortierella alpina
<400> 16
atgtccctcg accagaacgc ccagtccgtt gagctcccag gcacccggca accaggccag 60
acaggcatct atcgccgcaa aggcttcgag aatgcccttc tcgccgtccc acccagcaga 120
ccgcacatca agaccatcta cgatgccttc cagcacggac tgaagcttaa tcccaacgga 180
gctgccctgg gcagccgagt gtacgacccg gtgacggaca cctttggagg ctatgtctgg 240
cagacgtatg cacaggtgaa cgaccgcatc actcgcttcg gcagtggatt ggtcaaaatt 300
cataaggacg tccatggtct tgccaccgtg ggccagaagt ggtctctcgg aatctgggcc 360
atcaaccgac ccgagtggac catcgcgtcc gaggcttgct cggcctacaa cctggtctcc 420
gtgggtcttt acgatacttt gggacccgag gctgtgactt atggcattaa tcacgctgag 480
tgctctattg tcgtaacaag tgtggatcat atcgcgacgc tgctgaacga atcttccaag 540
atgcctgggc tcaaaatcat catcagcatg gatgacctcg atactgggag agcaggccca 600
ggactggctc ccaccggcac catcctcagg acttacgctc aggacaaagg ggtactactt 660
tatgattggt ctgaggttga agccgtcggt attcagcatg gacgaaagca tacgccacca 720
acctcctccg acgcatatac gatctgctat accagcggga caacaggctt gccaaaaggt 780
gccattttga cccatggaaa cttgatcgcc cttttggcct ccagtgatgt ggccacacca 840
gtgctggctg acgattgcct catcagtttc ttgcccctgc ctcacgtctt tggtcgggtc 900
atggagctct tcgcgatggc cgcaggagga aagattggct acagcacggg agatcctttg 960
cgtctcttgg aggacgtctc gcacctaaag ccctccatct tccccgctgt gcccagactg 1020
ctgaaccgcg tgtatgccaa ggtgtatgcg gcaactgttg gagcgcctgg actcacaggg 1080
gcactggcgc gacgaggatt ggccaccaag ctcaccaatt tgagagaggg caaaggtttc 1140
caccacccat tgtgggaccg aatcctcttc tcaaaggtca agcaagcgct cggcggcaat 1200
gtgagactga tgttgactgc ctccgctccc atctcggccg agatcttgga attcgtccgt 1260
gtcgctttct gctgcgaggt cgtggaggca tatggacaga ctgagggcgg tggagcggcc 1320
acaaacaccg tgattggcga gaccgaggct ggacacgtcg gtcctcctca agcttgttgc 1380
gagatcaaac tggtggatgt acccgagctg aactactttg cgaccgataa accattccct 1440
cgtggtgaga tttgtgtccg tggacccggt gtcattcctg gttatctcaa ggatgaggcc 1500
aagaccaagg agaccattga tgaggagggc tggctgcact cgggcgatat cgccatcatg 1560
agtggcaaag gcaccgttac catcattgac aggaagaaga acgtgttcaa gctgagccaa 1620
ggagaataca tcgcggcaga gaacattgaa gggcgtttcc tctccaaggt tccattcatc 1680
caacaaattc tggtgcacgg cgactcgacc gagagctgtt tggtggccat cttgatccca 1740
gagcctgagg ccttcatccc ctttgtgaac aaagtgctcg agaacgtcaa tcttcaacct 1800
ggagatcttg cagcctacag gaagatcgtt aacaacccaa agctgcgcca ggctgtcctc 1860
aaagagctga tcaaggctgg caaggatgct ggattgaaag gctttgagat tccaaaggcg 1920
atcctcctcg aatctgaggc attcacggtc gaaaacgaca agatgacccc gactttcaag 1980
atcaaaagac accctgtcgt ccaggcttac cgcgagcaac tgacagccct ctacaacgaa 2040
atccatcaaa aggaatccaa gctg 2064
<210> 17
<211> 688
<212> PRT
<213> Mortierella alpina
<400> 17
Met Ser Leu Asp Gln Asn Ala Gln Ser Val Glu Leu Pro Gly Thr Arg
1 5 10 15
Gln Pro Gly Gln Thr Gly Ile Tyr Arg Arg Lys Gly Phe Glu Asn Ala
20 25 30
Leu Leu Ala Val Pro Pro Ser Arg Pro His Ile Lys Thr Ile Tyr Asp
35 40 45
Ala Phe Gln His Gly Leu Lys Leu Asn Pro Asn Gly Ala Ala Leu Gly
50 55 60
Ser Arg Val Tyr Asp Pro Val Thr Asp Thr Phe Gly Gly Tyr Val Trp
65 70 75 80
Gln Thr Tyr Ala Gln Val Asn Asp Arg Ile Thr Arg Phe Gly Ser Gly
85 90 95
Leu Val Lys Ile His Lys Asp Val His Gly Leu Ala Thr Val Gly Gln
100 105 110
Lys Trp Ser Leu Gly Ile Trp Ala Ile Asn Arg Pro Glu Trp Thr Ile
115 120 125
Ala Ser Glu Ala Cys Ser Ala Tyr Asn Leu Val Ser Val Gly Leu Tyr
130 135 140
Asp Thr Leu Gly Pro Glu Ala Val Thr Tyr Gly Ile Asn His Ala Glu
145 150 155 160
Cys Ser Ile Val Val Thr Ser Val Asp His Ile Ala Thr Leu Leu Asn
165 170 175
Glu Ser Ser Lys Met Pro Gly Leu Lys Ile Ile Ile Ser Met Asp Asp
180 185 190
Leu Asp Thr Gly Arg Ala Gly Pro Gly Leu Ala Pro Thr Gly Thr Ile
195 200 205
Leu Arg Thr Tyr Ala Gln Asp Lys Gly Val Leu Leu Tyr Asp Trp Ser
210 215 220
Glu Val Glu Ala Val Gly Ile Gln His Gly Arg Lys His Thr Pro Pro
225 230 235 240
Thr Ser Ser Asp Ala Tyr Thr Ile Cys Tyr Thr Ser Gly Thr Thr Gly
245 250 255
Leu Pro Lys Gly Ala Ile Leu Thr His Gly Asn Leu Ile Ala Leu Leu
260 265 270
Ala Ser Ser Asp Val Ala Thr Pro Val Leu Ala Asp Asp Cys Leu Ile
275 280 285
Ser Phe Leu Pro Leu Pro His Val Phe Gly Arg Val Met Glu Leu Phe
290 295 300
Ala Met Ala Ala Gly Gly Lys Ile Gly Tyr Ser Thr Gly Asp Pro Leu
305 310 315 320
Arg Leu Leu Glu Asp Val Ser His Leu Lys Pro Ser Ile Phe Pro Ala
325 330 335
Val Pro Arg Leu Leu Asn Arg Val Tyr Ala Lys Val Tyr Ala Ala Thr
340 345 350
Val Gly Ala Pro Gly Leu Thr Gly Ala Leu Ala Arg Arg Gly Leu Ala
355 360 365
Thr Lys Leu Thr Asn Leu Arg Glu Gly Lys Gly Phe His His Pro Leu
370 375 380
Trp Asp Arg Ile Leu Phe Ser Lys Val Lys Gln Ala Leu Gly Gly Asn
385 390 395 400
Val Arg Leu Met Leu Thr Ala Ser Ala Pro Ile Ser Ala Glu Ile Leu
405 410 415
Glu Phe Val Arg Val Ala Phe Cys Cys Glu Val Val Glu Ala Tyr Gly
420 425 430
Gln Thr Glu Gly Gly Gly Ala Ala Thr Asn Thr Val Ile Gly Glu Thr
435 440 445
Glu Ala Gly His Val Gly Pro Pro Gln Ala Cys Cys Glu Ile Lys Leu
450 455 460
Val Asp Val Pro Glu Leu Asn Tyr Phe Ala Thr Asp Lys Pro Phe Pro
465 470 475 480
Arg Gly Glu Ile Cys Val Arg Gly Pro Gly Val Ile Pro Gly Tyr Leu
485 490 495
Lys Asp Glu Ala Lys Thr Lys Glu Thr Ile Asp Glu Glu Gly Trp Leu
500 505 510
His Ser Gly Asp Ile Ala Ile Met Ser Gly Lys Gly Thr Val Thr Ile
515 520 525
Ile Asp Arg Lys Lys Asn Val Phe Lys Leu Ser Gln Gly Glu Tyr Ile
530 535 540
Ala Ala Glu Asn Ile Glu Gly Arg Phe Leu Ser Lys Val Pro Phe Ile
545 550 555 560
Gln Gln Ile Leu Val His Gly Asp Ser Thr Glu Ser Cys Leu Val Ala
565 570 575
Ile Leu Ile Pro Glu Pro Glu Ala Phe Ile Pro Phe Val Asn Lys Val
580 585 590
Leu Glu Asn Val Asn Leu Gln Pro Gly Asp Leu Ala Ala Tyr Arg Lys
595 600 605
Ile Val Asn Asn Pro Lys Leu Arg Gln Ala Val Leu Lys Glu Leu Ile
610 615 620
Lys Ala Gly Lys Asp Ala Gly Leu Lys Gly Phe Glu Ile Pro Lys Ala
625 630 635 640
Ile Leu Leu Glu Ser Glu Ala Phe Thr Val Glu Asn Asp Lys Met Thr
645 650 655
Pro Thr Phe Lys Ile Lys Arg His Pro Val Val Gln Ala Tyr Arg Glu
660 665 670
Gln Leu Thr Ala Leu Tyr Asn Glu Ile His Gln Lys Glu Ser Lys Leu
675 680 685
<210> 18
<211> 2067
<212> DNA
<213> Mortierella alpina
<400> 18
atgtccctcg accagaacgc ccagtccgtt gagctcccag gcacccggca accaggccag 60
acaggcatct atcgccgcaa aggcttcgag aatgcccttc tcgccgtccc acccagcaga 120
ccgcacatca agaccatcta cgatgccttc cagcacggac tgaagcttaa tcccaacgga 180
gctgccctgg gcagccgagt gtacgacccg gtgacggaca cctttggagg ctatgtctgg 240
cagacgtatg cacaggtgaa cgaccgcatc actcgcttcg gcagtggatt ggtcaaaatt 300
cataaggacg tccatggtct tgccaccgtg ggccagaagt ggtctctcgg aatctgggcc 360
atcaaccgac ccgagtggac catcgcgtcc gaggcttgct cggcctacaa cctggtctcc 420
gtgggtcttt acgatacttt gggacccgag gctgtgactt atggcattaa tcacgctgag 480
tgctctattg tcgtaacaag tgtggatcat atcgcgacgc tgctgaacga atcttccaag 540
atgcctgggc tcaaaatcat catcagcatg gatgacctcg atactgggag agcaggccca 600
ggactggctc ccaccggcac catcctcagg acttacgctc aggacaaagg ggtactactt 660
tatgattggt ctgaggttga agccgtcggt attcagcatg gacgaaagca tacgccacca 720
acctcctccg acgcatatac gatctgctat accagcggga caacaggctt gccaaaaggt 780
gccattttga cccatggaaa cttgatcgcc cttttggcct ccagtgatgt ggccacacca 840
gtgctggctg acgattgcct catcagtttc ttgcccctgc ctcacgtctt tggtcgggtc 900
atggagctct tcgcgatggc cgcaggagga aagattggct acagcacggg agatcctttg 960
cgtctcttgg aggacgtctc gcacctaaag ccctccatct tccccgctgt gcccagactg 1020
ctgaaccgcg tgtatgccaa ggtgtatgcg gcaactgttg gagcgcctgg actcacaggg 1080
gcactggcgc gacgaggatt ggccaccaag ctcaccaatt tgagagaggg caaaggtttc 1140
caccacccat tgtgggaccg aatcctcttc tcaaaggtca agcaagcgct cggcggcaat 1200
gtgagactga tgttgactgc ctccgctccc atctcggccg agatcttgga attcgtccgt 1260
gtcgctttct gctgcgaggt cgtggaggca tatggacaga ctgagggcgg tggagcggcc 1320
acaaacaccg tgattggcga gaccgaggct ggacacgtcg gtcctcctca agcttgttgc 1380
gagatcaaac tggtggatgt acccgagctg aactactttg cgaccgataa accattccct 1440
cgtggtgaga tttgtgtccg tggacccggt gtcattcctg gttatctcaa ggatgaggcc 1500
aagaccaagg agaccattga tgaggagggc tggctgcact cgggcgatat cgccatcatg 1560
agtggcaaag gcaccgttac catcattgac aggaagaaga acgtgttcaa gctgagccaa 1620
ggagaataca tcgcggcaga gaacattgaa gggcgtttcc tctccaaggt tccattcatc 1680
caacaaattc tggtgcacgg cgactcgacc gagagctgtt tggtggccat cttgatccca 1740
gagcctgagg ccttcatccc ctttgtgaac aaagtgctcg agaacgtcaa tcttcaacct 1800
ggagatcttg cagcctacag gaagatcgtt aacaacccaa agctgcgcca ggctgtcctc 1860
aaagagctga tcaaggctgg caaggatgct ggattgaaag gctttgagat tccaaaggcg 1920
atcctcctcg aatctgaggc attcacggtc gaaaacgaca agatgacccc gactttcaag 1980
atcaaaagac accctgtcgt ccaggcttac cgcgagcaac tgacagccct ctacaacgaa 2040
atccatcaaa aggaatccaa gctgtaa 2067
<210> 19
<211> 2309
<212> DNA
<213> Mortierella alpina
<400> 19
cacacgctca cgttcgctct cacccgaccc actccccact ctcgctctca ttctctccct 60
tgtccttccc ttgtcccttt caaggtctaa cagcatcaac atcagcatca gcatcaagct 120
tctcattcct ccctcgtcta aatctctgaa agagttcgct ttgcaattca gcaatgtccc 180
tcgaccagaa cgcccagtcc gttgagctcc caggcacccg gcaaccaggc cagacaggca 240
tctatcgccg caaaggcttc gagaatgccc ttctcgccgt cccacccagc agaccgcaca 300
tcaagaccat ctacgatgcc ttccagcacg gactgaagct taatcccaac ggagctgccc 360
tgggcagccg agtgtacgac ccggtgacgg acacctttgg aggctatgtc tggcagacgt 420
atgcacaggt gaacgaccgc atcactcgct tcggcagtgg attggtcaaa attcataagg 480
acgtccatgg tcttgccacc gtgggccaga agtggtctct cggaatctgg gccatcaacc 540
gacccgagtg gaccatcgcg tccgaggctt gctcggccta caacctggtc tccgtgggtc 600
tttacgatac tttgggaccc gaggctgtga cttatggcat taatcacgct gagtgctcta 660
ttgtcgtaac aagtgtggat catatcgcga cgctgctgaa cgaatcttcc aagatgcctg 720
ggctcaaaat catcatcagc atggatgacc tcgatactgg gagagcaggc ccaggactgg 780
ctcccaccgg caccatcctc aggacttacg ctcaggacaa aggggtacta ctttatgatt 840
ggtctgaggt tgaagccgtc ggtattcagc atggacgaaa gcatacgcca ccaacctcct 900
ccgacgcata tacgatctgc tataccagcg ggacaacagg cttgccaaaa ggtgccattt 960
tgacccatgg aaacttgatc gcccttttgg cctccagtga tgtggccaca ccagtgctgg 1020
ctgacgattg cctcatcagt ttcttgcccc tgcctcacgt ctttggtcgg gtcatggagc 1080
tcttcgcgat ggccgcagga ggaaagattg gctacagcac gggagatcct ttgcgtctct 1140
tggaggacgt ctcgcaccta aagccctcca tcttccccgc tgtgcccaga ctgctgaacc 1200
gcgtgtatgc caaggtgtat gcggcaactg ttggagcgcc tggactcaca ggggcactgg 1260
cgcgacgagg attggccacc aagctcacca atttgagaga gggcaaaggt ttccaccacc 1320
cattgtggga ccgaatcctc ttctcaaagg tcaagcaagc gctcggcggc aatgtgagac 1380
tgatgttgac tgcctccgct cccatctcgg ccgagatctt ggaattcgtc cgtgtcgctt 1440
tctgctgcga ggtcgtggag gcatatggac agactgaggg cggtggagcg gccacaaaca 1500
ccgtgattgg cgagaccgag gctggacacg tcggtcctcc tcaagcttgt tgcgagatca 1560
aactggtgga tgtacccgag ctgaactact ttgcgaccga taaaccattc cctcgtggtg 1620
agatttgtgt ccgtggaccc ggtgtcattc ctggttatct caaggatgag gccaagacca 1680
aggagaccat tgatgaggag ggctggctgc actcgggcga tatcgccatc atgagtggca 1740
aaggcaccgt taccatcatt gacaggaaga agaacgtgtt caagctgagc caaggagaat 1800
acatcgcggc agagaacatt gaagggcgtt tcctctccaa ggttccattc atccaacaaa 1860
ttctggtgca cggcgactcg accgagagct gtttggtggc catcttgatc ccagagcctg 1920
aggccttcat cccctttgtg aacaaagtgc tcgagaacgt caatcttcaa cctggagatc 1980
ttgcagccta caggaagatc gttaacaacc caaagctgcg ccaggctgtc ctcaaagagc 2040
tgatcaaggc tggcaaggat gctggattga aaggctttga gattccaaag gcgatcctcc 2100
tcgaatctga ggcattcacg gtcgaaaacg acaagatgac cccgactttc aagatcaaaa 2160
gacaccctgt cgtccaggct taccgcgagc aactgacagc cctctacaac gaaatccatc 2220
aaaaggaatc caagctgtaa aaagaaaccc ttagaacctg cggtgctcgc agcaattaaa 2280
aaaaaaagag agatattact ctcacagct 2309
<210> 20
<211> 2801
<212> DNA
<213> Mortierella alpina
<400> 20
atgtccctcg accagaacgc ccagtccgtt gagctcccag gcacccggca accaggccag 60
acaggtaaca caggccagca gtactgcacc cgttttccat taaggttcca accccagtct 120
tggacatggg gcgagacctg cttgttgtta ctgtggattc acaccccgcg cgccccttcc 180
cttctggtgc cttgacccgt gtgacacccc gcaaactgct cagctcttct cggctgacca 240
accttcattc acatccacgt aggcatctat cgccgcaaag gcttcgagaa tgcccttctc 300
gccgtcccac ccagcagacc gcacatcaag accatctacg atgccttcca gcacggactg 360
aagcttaatc ccaacggagc tgccctgggc agccgagtgt acgacccggt gacggacacc 420
tttggaggct atgtctggca gacgtatgca caggtgaacg accgcatcac tcgcttcggc 480
agtggattgg tcaaaattca taaggacgtc catggtcttg ccaccgtggg ccagaagtgg 540
tctctcggaa tctgggccat caaccgaccc gagtggacca tcgcgtccga ggcttgctcg 600
gcctacaacc tggtctccgt gggtctttac gatactttgg gacccgaggc tgtgacttat 660
ggcattaatc acgctgagtg ctctattgtc gtaacaagtg gtaaggacat gaagccataa 720
cgacaacggc taaaaaaaaa catggttctc atgacaagta tcgatagtaa cgttattctt 780
ggcgcttgta tgtgtttcta gtggatcata tcgcgacgct gctgaacgaa tcttccaaga 840
tgcctgggct caaaatcatc atcagcatgg atgacctcga tactgggaga gcaggcccag 900
gactggctcc caccggcacc atcctcagga cttacgctca ggacaaaggg gtactacttt 960
atgattggtc tgaggttgaa gccgtcggta ttcagcatgg acgaaagcat acgccaccaa 1020
cctcctccga cgcatatacg atctgctata ccagcgggac aacaggcttg ccagtaatat 1080
gttgctttta ttcccacgca tacagtgtgc cgatattttc aatgttcaat tgctctcatt 1140
agatgcatga cacttatcat tacttaagcg actttccttt ggcgttcata gaaaggtgcc 1200
attttgaccc atggaaactt gatcgccctt ttggcctcca gtgatgtggc cacaccagtg 1260
ctggctgacg attgcctcat cagtttcttg cccctgcctc acgtctttgg tcgggtcatg 1320
gagctcttcg cgatggccgc aggaggaaag attggctaca gcacgggaga tcctttgcgt 1380
ctcttggagg acgtctcgca cctaaagccc tccatcttcc ccgctgtgcc cagactgctg 1440
aaccgcgtgt atgccaaggt gtatgcggca actgttggag cgcctggact cacaggggca 1500
ctggcgcgac gaggattggc caccaagctc accaatttga gagagggcaa aggtttccac 1560
cacccattgt gggaccgaat cctcttctca aaggtcaagc aagcgctcgg cggcaatgtg 1620
agactgatgt tgactggtaa gtgtgctttt ggaagatgaa atcacgttta tgtaaccccc 1680
cccccccccc cttgtttata aacattaatc gttgtactgt cgtcgtctag cctccgctcc 1740
catctcggcc gagatcttgg aattcgtccg tgtcgctttc tgctgcgagg tcgtggaggc 1800
atatggacag actgagggcg gtggagcggc cacaaacacc gtgattggcg agaccgaggc 1860
tggacacgtc ggtcctcctc aagcttgttg cgagatcaaa ctggtggatg tacccgagct 1920
gaactacttt gcgaccgata aaccattccc tcgtggtgag atttgtgtcc gtggacccgg 1980
tgtcattcct ggttatctca aggatgaggc caagaccaag gagaccattg atgaggaggg 2040
ctggctgcac tcgggcgata tcgccatcat gagtggcaaa ggcaccgtta ccatcattga 2100
caggaagaag aacgtgttca aggtaacaaa aacagtgcgc tctccacaga tctgttagcg 2160
cgctttttct gcgcacagta cactgaaacc accctgtttt gctttgttcc tgaactagct 2220
gagccaagga gaatacatcg cggcagagaa cattgaaggg cgtttcctct ccaaggttcc 2280
attcatccaa caaattctgg tgcacggcga ctcgaccgag agctgtttgg tggccatctt 2340
gatcccagag cctgaggcct tcatcccctt tgtgaacaaa gtgctcgaga acgtcaatct 2400
tcaacctgga gatcttgcag cctacaggaa gatcgttaac aacccaaagc tgcgccaggc 2460
tgtcctcaaa gagctgatca aggctggcaa ggatgctgga ttgaaagggt acgtacagaa 2520
ctctctttgc taccgtagcg gaggcccact agagttgagg tgatacagat cgacagaaaa 2580
aaaaaaaaaa ctaaacaatc tctcttcaaa aacttggtgt tctcttgtac cacagctttg 2640
agattccaaa ggcgatcctc ctcgaatctg aggcattcac ggtcgaaaac gacaagatga 2700
ccccgacttt caagatcaaa agacaccctg tcgtccaggc ttaccgcgag caactgacag 2760
ccctctacaa cgaaatccat caaaaggaat ccaagctgta a 2801
<210> 21
<211> 1977
<212> DNA
<213> Mortierella alpina
<400> 21
atgaccaccc aattgtactc catcgaagtg gcaggcagcc cagagattcc gggcgagggc 60
aaacctcggc gcagcgttct cagcccagac aaactcgtcc agagctatca gtctttcaag 120
ggcgacggct ccatcaccac tctatatgag aactttttgg agggcatcca gcgctcagag 180
ggaggagagt ttctcggaca ccgccccatc gtcgataatg tagctcagcc gtacgaatgg 240
ctaagctaca cgcgcgttca ggaacgtgtc gccaactttg gcgctggtct catccagctg 300
ggcctgaaag tcgactcgaa ctttggcatc ttttccatca acaggcccga atggacaatg 360
agtgagctgg caggctacat gtacaacttt acatctgtgc cgctttacga cactctgggc 420
gtctcggcca tcgaatacat cgttaatcag accgagatgg agaccatcat cgcgtcggct 480
gataaagcct cgatcctgtt aaacatgaaa tcaactctgc cgacactcaa gaacattgtc 540
gttatgggct cgctcgaaga cgcgctcgtt gtcgagggta gggaaatgga tatccacatc 600
gttgcgtgga gtgacgtcga acgcgatggc ttcaacaacc ccgcgccagc caaccctcca 660
acaccggacg acgtcgccac catctgctac acgtcaggaa caaccgggac accaaagggc 720
gcaatcctga cccacaaaaa ctttgtggct ggccttgcct cgttccatat gatggcaaag 780
caccaaaagt ttttcatccc ctcgagcgtt gacactcaca tatcttacct gcccctggca 840
catgtgttcg agcgtttgtc tcaggctgtt atgatttctg gcgcagctcg gattgggtat 900
taccaaggag acactttgaa gctactcgat gatgtggcga tcttgcagcc caccatcttt 960
gtgtccgttc cacgactctt taacaggatt tacgacaagg ttctagcagg tgtgaaagcc 1020
aagggcggtc tcgcagcttt cttattcaac cgcgcttttg aaaccaagaa ggctaatttg 1080
aaacgcggta tcctggagca cgccatctgg gatcgactgg tatttggtgc aattcgtgcg 1140
cgactcggtg gcaaagttaa gcatattgtc tcaggatcag cccctatagc cccggacgtc 1200
atggatttcc ttcgcatttg cttcagtgcc gacgtttatg aagggtatgg acagacggag 1260
caggctgctg gtttgtgtat gagctacaga ggtgacttga cctcgggtca agtgggaccc 1320
cctcagctgt gcgtcgaagt gaagctcaga gacgttccgg acatgcacta cacaagccag 1380
gacaagcctc gccctcgcgg ggagatcatg cttcgaggcc attcagtttt caaaggctat 1440
tacaaggctc caaagcaaac agaggagaca ctggacgcac agggatgggc aagcactgga 1500
gacgttggtg aatgggacga gcgtggccgc ttggtggtga tcgaccgtgt caaaaacatt 1560
ttcaagttgg ctcaaggcga atacattgca cctgaaaaga tcgaagccgt cctggccaaa 1620
cactaccttg tcgcccaggt ctttgtctac ggagactcct tccaagcgac attggtggga 1680
gttgtcgtgc ccgatgcgga gacgctaaag ccttgggccg atgaccatgg ccttggaggc 1740
aagagctatg aagaactatg cgctcatccc gctgtcaaag aaactttgct gaaggagctc 1800
aaagagtttg gtcgtgaaaa tgatctgaag ggctttgaga tattgaagaa cattcatgta 1860
acggcggagc aattctcaat tgagaatgat cttttgacac ccacattcaa gctgaagaga 1920
cacaccgcga aagagaagta catcgccgag attgagctga tgtataacgg gatccac 1977
<210> 22
<211> 659
<212> PRT
<213> Mortierella alpina
<400> 22
Met Thr Thr Gln Leu Tyr Ser Ile Glu Val Ala Gly Ser Pro Glu Ile
1 5 10 15
Pro Gly Glu Gly Lys Pro Arg Arg Ser Val Leu Ser Pro Asp Lys Leu
20 25 30
Val Gln Ser Tyr Gln Ser Phe Lys Gly Asp Gly Ser Ile Thr Thr Leu
35 40 45
Tyr Glu Asn Phe Leu Glu Gly Ile Gln Arg Ser Glu Gly Gly Glu Phe
50 55 60
Leu Gly His Arg Pro Ile Val Asp Asn Val Ala Gln Pro Tyr Glu Trp
65 70 75 80
Leu Ser Tyr Thr Arg Val Gln Glu Arg Val Ala Asn Phe Gly Ala Gly
85 90 95
Leu Ile Gln Leu Gly Leu Lys Val Asp Ser Asn Phe Gly Ile Phe Ser
100 105 110
Ile Asn Arg Pro Glu Trp Thr Met Ser Glu Leu Ala Gly Tyr Met Tyr
115 120 125
Asn Phe Thr Ser Val Pro Leu Tyr Asp Thr Leu Gly Val Ser Ala Ile
130 135 140
Glu Tyr Ile Val Asn Gln Thr Glu Met Glu Thr Ile Ile Ala Ser Ala
145 150 155 160
Asp Lys Ala Ser Ile Leu Leu Asn Met Lys Ser Thr Leu Pro Thr Leu
165 170 175
Lys Asn Ile Val Val Met Gly Ser Leu Glu Asp Ala Leu Val Val Glu
180 185 190
Gly Arg Glu Met Asp Ile His Ile Val Ala Trp Ser Asp Val Glu Arg
195 200 205
Asp Gly Phe Asn Asn Pro Ala Pro Ala Asn Pro Pro Thr Pro Asp Asp
210 215 220
Val Ala Thr Ile Cys Tyr Thr Ser Gly Thr Thr Gly Thr Pro Lys Gly
225 230 235 240
Ala Ile Leu Thr His Lys Asn Phe Val Ala Gly Leu Ala Ser Phe His
245 250 255
Met Met Ala Lys His Gln Lys Phe Phe Ile Pro Ser Ser Val Asp Thr
260 265 270
His Ile Ser Tyr Leu Pro Leu Ala His Val Phe Glu Arg Leu Ser Gln
275 280 285
Ala Val Met Ile Ser Gly Ala Ala Arg Ile Gly Tyr Tyr Gln Gly Asp
290 295 300
Thr Leu Lys Leu Leu Asp Asp Val Ala Ile Leu Gln Pro Thr Ile Phe
305 310 315 320
Val Ser Val Pro Arg Leu Phe Asn Arg Ile Tyr Asp Lys Val Leu Ala
325 330 335
Gly Val Lys Ala Lys Gly Gly Leu Ala Ala Phe Leu Phe Asn Arg Ala
340 345 350
Phe Glu Thr Lys Lys Ala Asn Leu Lys Arg Gly Ile Leu Glu His Ala
355 360 365
Ile Trp Asp Arg Leu Val Phe Gly Ala Ile Arg Ala Arg Leu Gly Gly
370 375 380
Lys Val Lys His Ile Val Ser Gly Ser Ala Pro Ile Ala Pro Asp Val
385 390 395 400
Met Asp Phe Leu Arg Ile Cys Phe Ser Ala Asp Val Tyr Glu Gly Tyr
405 410 415
Gly Gln Thr Glu Gln Ala Ala Gly Leu Cys Met Ser Tyr Arg Gly Asp
420 425 430
Leu Thr Ser Gly Gln Val Gly Pro Pro Gln Leu Cys Val Glu Val Lys
435 440 445
Leu Arg Asp Val Pro Asp Met His Tyr Thr Ser Gln Asp Lys Pro Arg
450 455 460
Pro Arg Gly Glu Ile Met Leu Arg Gly His Ser Val Phe Lys Gly Tyr
465 470 475 480
Tyr Lys Ala Pro Lys Gln Thr Glu Glu Thr Leu Asp Ala Gln Gly Trp
485 490 495
Ala Ser Thr Gly Asp Val Gly Glu Trp Asp Glu Arg Gly Arg Leu Val
500 505 510
Val Ile Asp Arg Val Lys Asn Ile Phe Lys Leu Ala Gln Gly Glu Tyr
515 520 525
Ile Ala Pro Glu Lys Ile Glu Ala Val Leu Ala Lys His Tyr Leu Val
530 535 540
Ala Gln Val Phe Val Tyr Gly Asp Ser Phe Gln Ala Thr Leu Val Gly
545 550 555 560
Val Val Val Pro Asp Ala Glu Thr Leu Lys Pro Trp Ala Asp Asp His
565 570 575
Gly Leu Gly Gly Lys Ser Tyr Glu Glu Leu Cys Ala His Pro Ala Val
580 585 590
Lys Glu Thr Leu Leu Lys Glu Leu Lys Glu Phe Gly Arg Glu Asn Asp
595 600 605
Leu Lys Gly Phe Glu Ile Leu Lys Asn Ile His Val Thr Ala Glu Gln
610 615 620
Phe Ser Ile Glu Asn Asp Leu Leu Thr Pro Thr Phe Lys Leu Lys Arg
625 630 635 640
His Thr Ala Lys Glu Lys Tyr Ile Ala Glu Ile Glu Leu Met Tyr Asn
645 650 655
Gly Ile His
<210> 23
<211> 1980
<212> DNA
<213> Mortierella alpina
<400> 23
atgaccaccc aattgtactc catcgaagtg gcaggcagcc cagagattcc gggcgagggc 60
aaacctcggc gcagcgttct cagcccagac aaactcgtcc agagctatca gtctttcaag 120
ggcgacggct ccatcaccac tctatatgag aactttttgg agggcatcca gcgctcagag 180
ggaggagagt ttctcggaca ccgccccatc gtcgataatg tagctcagcc gtacgaatgg 240
ctaagctaca cgcgcgttca ggaacgtgtc gccaactttg gcgctggtct catccagctg 300
ggcctgaaag tcgactcgaa ctttggcatc ttttccatca acaggcccga atggacaatg 360
agtgagctgg caggctacat gtacaacttt acatctgtgc cgctttacga cactctgggc 420
gtctcggcca tcgaatacat cgttaatcag accgagatgg agaccatcat cgcgtcggct 480
gataaagcct cgatcctgtt aaacatgaaa tcaactctgc cgacactcaa gaacattgtc 540
gttatgggct cgctcgaaga cgcgctcgtt gtcgagggta gggaaatgga tatccacatc 600
gttgcgtgga gtgacgtcga acgcgatggc ttcaacaacc ccgcgccagc caaccctcca 660
acaccggacg acgtcgccac catctgctac acgtcaggaa caaccgggac accaaagggc 720
gcaatcctga cccacaaaaa ctttgtggct ggccttgcct cgttccatat gatggcaaag 780
caccaaaagt ttttcatccc ctcgagcgtt gacactcaca tatcttacct gcccctggca 840
catgtgttcg agcgtttgtc tcaggctgtt atgatttctg gcgcagctcg gattgggtat 900
taccaaggag acactttgaa gctactcgat gatgtggcga tcttgcagcc caccatcttt 960
gtgtccgttc cacgactctt taacaggatt tacgacaagg ttctagcagg tgtgaaagcc 1020
aagggcggtc tcgcagcttt cttattcaac cgcgcttttg aaaccaagaa ggctaatttg 1080
aaacgcggta tcctggagca cgccatctgg gatcgactgg tatttggtgc aattcgtgcg 1140
cgactcggtg gcaaagttaa gcatattgtc tcaggatcag cccctatagc cccggacgtc 1200
atggatttcc ttcgcatttg cttcagtgcc gacgtttatg aagggtatgg acagacggag 1260
caggctgctg gtttgtgtat gagctacaga ggtgacttga cctcgggtca agtgggaccc 1320
cctcagctgt gcgtcgaagt gaagctcaga gacgttccgg acatgcacta cacaagccag 1380
gacaagcctc gccctcgcgg ggagatcatg cttcgaggcc attcagtttt caaaggctat 1440
tacaaggctc caaagcaaac agaggagaca ctggacgcac agggatgggc aagcactgga 1500
gacgttggtg aatgggacga gcgtggccgc ttggtggtga tcgaccgtgt caaaaacatt 1560
ttcaagttgg ctcaaggcga atacattgca cctgaaaaga tcgaagccgt cctggccaaa 1620
cactaccttg tcgcccaggt ctttgtctac ggagactcct tccaagcgac attggtggga 1680
gttgtcgtgc ccgatgcgga gacgctaaag ccttgggccg atgaccatgg ccttggaggc 1740
aagagctatg aagaactatg cgctcatccc gctgtcaaag aaactttgct gaaggagctc 1800
aaagagtttg gtcgtgaaaa tgatctgaag ggctttgaga tattgaagaa cattcatgta 1860
acggcggagc aattctcaat tgagaatgat cttttgacac ccacattcaa gctgaagaga 1920
cacaccgcga aagagaagta catcgccgag attgagctga tgtataacgg gatccactga 1980
<210> 24
<211> 2196
<212> DNA
<213> Mortierella alpina
<400> 24
tttttttttt tttcttttct ctccaaccct ttcaccccca cgcctcggct cgtactcaag 60
cctcacgtcc acactctcgt cctctagcct gctgcattca cgattcacat tcctcctcga 120
ctccagcatc gctactccct cgtgctactt tcaccatgac cacccaattg tactccatcg 180
aagtggcagg cagcccagag attccgggcg agggcaaacc tcggcgcagc gttctcagcc 240
cagacaaact cgtccagagc tatcagtctt tcaagggcga cggctccatc accactctat 300
atgagaactt tttggagggc atccagcgct cagagggagg agagtttctc ggacaccgcc 360
ccatcgtcga taatgtagct cagccgtacg aatggctaag ctacacgcgc gttcaggaac 420
gtgtcgccaa ctttggcgct ggtctcatcc agctgggcct gaaagtcgac tcgaactttg 480
gcatcttttc catcaacagg cccgaatgga caatgagtga gctggcaggc tacatgtaca 540
actttacatc tgtgccgctt tacgacactc tgggcgtctc ggccatcgaa tacatcgtta 600
atcagaccga gatggagacc atcatcgcgt cggctgataa agcctcgatc ctgttaaaca 660
tgaaatcaac tctgccgaca ctcaagaaca ttgtcgttat gggctcgctc gaagacgcgc 720
tcgttgtcga gggtagggaa atggatatcc acatcgttgc gtggagtgac gtcgaacgcg 780
atggcttcaa caaccccgcg ccagccaacc ctccaacacc ggacgacgtc gccaccatct 840
gctacacgtc aggaacaacc gggacaccaa agggcgcaat cctgacccac aaaaactttg 900
tggctggcct tgcctcgttc catatgatgg caaagcacca aaagtttttc atcccctcga 960
gcgttgacac tcacatatct tacctgcccc tggcacatgt gttcgagcgt ttgtctcagg 1020
ctgttatgat ttctggcgca gctcggattg ggtattacca aggagacact ttgaagctac 1080
tcgatgatgt ggcgatcttg cagcccacca tctttgtgtc cgttccacga ctctttaaca 1140
ggatttacga caaggttcta gcaggtgtga aagccaaggg cggtctcgca gctttcttat 1200
tcaaccgcgc ttttgaaacc aagaaggcta atttgaaacg cggtatcctg gagcacgcca 1260
tctgggatcg actggtattt ggtgcaattc gtgcgcgact cggtggcaaa gttaagcata 1320
ttgtctcagg atcagcccct atagccccgg acgtcatgga tttccttcgc atttgcttca 1380
gtgccgacgt ttatgaaggg tatggacaga cggagcaggc tgctggtttg tgtatgagct 1440
acagaggtga cttgacctcg ggtcaagtgg gaccccctca gctgtgcgtc gaagtgaagc 1500
tcagagacgt tccggacatg cactacacaa gccaggacaa gcctcgccct cgcggggaga 1560
tcatgcttcg aggccattca gttttcaaag gctattacaa ggctccaaag caaacagagg 1620
agacactgga cgcacaggga tgggcaagca ctggagacgt tggtgaatgg gacgagcgtg 1680
gccgcttggt ggtgatcgac cgtgtcaaaa acattttcaa gttggctcaa ggcgaataca 1740
ttgcacctga aaagatcgaa gccgtcctgg ccaaacacta ccttgtcgcc caggtctttg 1800
tctacggaga ctccttccaa gcgacattgg tgggagttgt cgtgcccgat gcggagacgc 1860
taaagccttg ggccgatgac catggccttg gaggcaagag ctatgaagaa ctatgcgctc 1920
atcccgctgt caaagaaact ttgctgaagg agctcaaaga gtttggtcgt gaaaatgatc 1980
tgaagggctt tgagatattg aagaacattc atgtaacggc ggagcaattc tcaattgaga 2040
atgatctttt gacacccaca ttcaagctga agagacacac cgcgaaagag aagtacatcg 2100
ccgagattga gctgatgtat aacgggatcc actgaaagag tctagccaaa gcagatcttt 2160
ttattactgt cgttaaaaaa actactcgta accatc 2196
<210> 25
<211> 2586
<212> DNA
<213> Mortierella alpina
<400> 25
atgaccaccc aattgtactc catcgaagtg gcaggcagcc cagagattcc gggcgagggc 60
aaacctcggc gcagcgttct cagcccagac aaactcgtcc agagctatca gtctttcaag 120
ggcgacggct ccatcaccac tctatatgag aactttttgg agggcatcca gcgctcaggt 180
actgacaccc cacatggtca gcgagacttc tccacatgac accagcgttt ctctattaac 240
gttatccctt ggcgcctttg gctttgttgt ggttaacgat gtgcctaatc atagagggag 300
gagagtttct cggacaccgc cccatcgtcg ataatgtagc tcagccgtac gaatggctaa 360
gctacacgcg cgttcaggaa cgtgtcgcca actttggcgc tggtctcatc cagctgggcc 420
tgaaagtcga ctcgaacttt ggcatctttt ccatcaacag gcccgaatgg gtgagtgcag 480
tgggaggatc ctttttcttt tatgaaatgg gcccgtgcga gtctagattc gatgatggct 540
gcggttggac ccggcctcgg cccccaacca aacacgtgtg ggaaacccca accgactcta 600
atagaactcc gttcctctga tttggcgacg aacatactat tacctgtaga caatgagtga 660
gctggcaggc tacatgtaca actttacatc tgtgccgctt tacgacactc tgggcgtctc 720
ggccatcgaa tacatcgtta atcagaccga gatggagacc atcatcgcgt cggctgataa 780
agcctcgatc ctgttaaaca tgaaatcaac tctgccgaca ctcaagaaca ttgtcgttat 840
gggctcgctc gaagacgcgc tcgttgtcga gggtagggaa atggatatcc acatcgttgc 900
gtggagtgac gtcgaacgcg atggcttcaa caaccccgcg ccagccaacc ctccaacacc 960
ggacgacgtc gccaccatct gctacacgtc aggaacaacc gggacaccaa agtaacgtta 1020
agatgtcgat atgagaatat ctctaaaatg tggcatgcag cttgaatgag aattcactcc 1080
ttcatagaca cttgttgtcc tttctcaagt cactcacctc tcttcattta tcctacgtgt 1140
atgtgtatgt aggggcgcaa tcctgaccca caaaaacttt gtggctggcc ttgcctcgtt 1200
ccatatgatg gcaaagcacc aaaagttttt catcccctcg agcgttgaca ctcacatatc 1260
ttacctgccc ctggcacatg tgttcgagcg tttgtctcag gctgttatga tttctggcgc 1320
agctcggatt gggtattacc aaggagacac tttgaagcta ctcgatgatg tggcgatctt 1380
gcagcccacc atctttgtgt ccgttccacg actctttaac aggatttacg acaaggttct 1440
agcaggtgtg aaagccaagg gcggtctcgc agctttctta ttcaaccgcg cttttgaaac 1500
caagaaggct aatttgaaac gcggtatcct ggagcacgcc atctgggatc gactggtatt 1560
tggtgcaatt cgtgcgcgac tcggtggcaa agttaagcat attgtctcag gatcagcccc 1620
tatagccccg gacgtcatgg atttccttcg catttgcttc agtgccgacg tttatgaagg 1680
gtatggacag acggagcagg ctgctggttt gtgtatgagc tacagaggtg acttgacctc 1740
gggtcaagtg ggaccccctc agctgtgcgt cgaagtgaag ctcagagacg ttccggacat 1800
gcactacaca agccaggaca agcctcgccc tcgcggggag atcatgcttc gaggccattc 1860
agttttcaaa ggctattaca aggctccaaa gcaaacagag gagacactgg acgcacaggg 1920
atgggcaagg tatggttttg tgcaaccaac tattttgtca attacgctta acactggttg 1980
tcatcagccc gcatctgact aaggtcacat tgtacgcgac atagcactgg agacgttggt 2040
gaatgggacg agcgtggccg cttggtggtg atcgaccgtg tcaaaaacat tttcaagttg 2100
gctcaaggcg aatacattgc acctgaaaag atcgaagccg tcctggccaa acactacctt 2160
gtcgcccagg tctttgtcta cggagactcc ttccaagcga cattggtggg agttgtcgtg 2220
cccgatgcgg agacgctaaa gccttgggcc gatgaccatg gccttggagg caagagctat 2280
gaagaactat gcgctcatcc cgctgtcaaa gaaaccttgc tgaaggagct caaagagttt 2340
ggtcgtgaaa atgatctgaa gggctttgag atattgaaga acattcatgt aacggcggag 2400
caattctcaa ttgagaatga tcttttggtg agtcgatcgg acttgcgcac cgaacagttt 2460
gagagtcaag gatcgtatat taactaagcc ttgctttggt agacacccac attcaagctg 2520
aagagacaca ccgcgaaaga gaagtacatc gccgagattg agctgatgta taacgggatc 2580
cactga 2586
<210> 26
<211> 1977
<212> DNA
<213> Mortierella alpina
<400> 26
atggctactc aaatgtactc ggtggtcgtc cccaacagcc ccgacattcc cggcgaaggc 60
aagccccgcc gtagtgtgct ttgtccagac aagctcctgg agaactaccc ctcagtgaaa 120
gcaggctcaa cgatcacgac cctgtacgag aacttccaag aaggtgttct ccgttcaggc 180
ggcgcccatt ttttgggcca tcgtcccatt gtgaatggcc agcctcaggc ttacaagtgg 240
cagtcgtatg tcgatgtcag caagcgtgtt acgcacttcg gcgctggcct ggctcatctc 300
ggcttgtctc caaagcaaaa ctttggaatt ttctctatca accggcctga gtggaccatg 360
agtgagcttg ctggctatat gcacaactac accagcgtcc ccctctatga tacattggga 420
gtcgccgcga tcgagtatat cgttaaccag actgagatgc agatcatcat tgcttcgtcc 480
gacaaagctt ctatcatcct ccacatgaaa tcagcacttc caaccgttca gacgattgtc 540
gtcatggggg aatttactga cgctctcgtc gcagagggta aggagctcaa catcaacatt 600
gtatcctgga ccgatgtcga aaagagcggt cttgagcggc ctgtcgaagc cgtgcacccc 660
acagccgagg atatcgctac catctgttac acatctggaa ccactggaac gccaaaaggt 720
gctatcttga cccacaagaa ctttgttgcc actatcgctt cattccacat gatggcaaag 780
catggcaggt tcttcattcc ctcgcctgcc gacacacatg tatcctacct gccccttgcc 840
cacgtctttg agcgcctttg ccaggctgtt atgatctcgg gcgctgcgcg tattggttac 900
taccaaggag atacgctgaa gctgctggac gatgttgccg tcctgcatcc caccattttt 960
gcctccgtcc ctcgtctctt taaccgtatc tacgacaagg tgcttgctgg cgtcaaggcc 1020
aagggtggta tcgccgcctt cttgtttaac cgcgcatata attccaagaa ggccaacttg 1080
cgaaagggcg tacttgagca tccgctctgg gacaagctgg tctttggagc gattcgcgcg 1140
cgcttgggtg gcaaggttaa gcacatcgtg tcaggatctg cccccatctc tcctgatgtg 1200
atggatttcc tccgcatctg cttcagcgct gatgtgtatg agggatatgg ccagacggaa 1260
caggcagccg gattaagtat gagctatcgc ggtgatttga ctccaggaca ggttggccca 1320
cctcaactgt gcacagaggt caagttgaag gacatcccta gtatgaacta tagcagcgcg 1380
gacaagcctt tcccccgtgg agaaatcatg cttcgcggaa actctgtgtt caagggctat 1440
tacaaagcac caaagcagac tgaagaaaca ttggatgctg acggttggtc cagtaccgga 1500
gacgttggac agtgggatgc ccaaggccgt ctggtggtca ttgatcgcgt caagaacatc 1560
ttcaagttgg cgcaaggaga atatattgcg cctgaaaaga tcgaggctgt cctcgccaag 1620
cacttcctcg ttgcccagat ttttgtctat gggcactcgc tccaggccac cattgtcgcg 1680
gtggttgtcc ctgatgctga gacgctcaag ttgtgggcta aagaaaacaa gctgggtgac 1740
aagtcttacg aggagctgtg cgctctccct cagcttcgca caaccctcca aaaggagttg 1800
gctacttttg gcaaagaatc ggatctgaag ggctttgaga ttcctaagaa cattcatgtt 1860
atctccgagc agttttcaat tgagaacgat cttttgaccc ccaccttcaa gctgaagaga 1920
catgctgcca aagagaagta taacgccgaa atcgaccgca tgtatgcaga aatcgct 1977
<210> 27
<211> 659
<212> PRT
<213> Mortierella alpina
<400> 27
Met Ala Thr Gln Met Tyr Ser Val Val Val Pro Asn Ser Pro Asp Ile
1 5 10 15
Pro Gly Glu Gly Lys Pro Arg Arg Ser Val Leu Cys Pro Asp Lys Leu
20 25 30
Leu Glu Asn Tyr Pro Ser Val Lys Ala Gly Ser Thr Ile Thr Thr Leu
35 40 45
Tyr Glu Asn Phe Gln Glu Gly Val Leu Arg Ser Gly Gly Ala His Phe
50 55 60
Leu Gly His Arg Pro Ile Val Asn Gly Gln Pro Gln Ala Tyr Lys Trp
65 70 75 80
Gln Ser Tyr Val Asp Val Ser Lys Arg Val Thr His Phe Gly Ala Gly
85 90 95
Leu Ala His Leu Gly Leu Ser Pro Lys Gln Asn Phe Gly Ile Phe Ser
100 105 110
Ile Asn Arg Pro Glu Trp Thr Met Ser Glu Leu Ala Gly Tyr Met His
115 120 125
Asn Tyr Thr Ser Val Pro Leu Tyr Asp Thr Leu Gly Val Ala Ala Ile
130 135 140
Glu Tyr Ile Val Asn Gln Thr Glu Met Gln Ile Ile Ile Ala Ser Ser
145 150 155 160
Asp Lys Ala Ser Ile Ile Leu His Met Lys Ser Ala Leu Pro Thr Val
165 170 175
Gln Thr Ile Val Val Met Gly Glu Phe Thr Asp Ala Leu Val Ala Glu
180 185 190
Gly Lys Glu Leu Asn Ile Asn Ile Val Ser Trp Thr Asp Val Glu Lys
195 200 205
Ser Gly Leu Glu Arg Pro Val Glu Ala Val His Pro Thr Ala Glu Asp
210 215 220
Ile Ala Thr Ile Cys Tyr Thr Ser Gly Thr Thr Gly Thr Pro Lys Gly
225 230 235 240
Ala Ile Leu Thr His Lys Asn Phe Val Ala Thr Ile Ala Ser Phe His
245 250 255
Met Met Ala Lys His Gly Arg Phe Phe Ile Pro Ser Pro Ala Asp Thr
260 265 270
His Val Ser Tyr Leu Pro Leu Ala His Val Phe Glu Arg Leu Cys Gln
275 280 285
Ala Val Met Ile Ser Gly Ala Ala Arg Ile Gly Tyr Tyr Gln Gly Asp
290 295 300
Thr Leu Lys Leu Leu Asp Asp Val Ala Val Leu His Pro Thr Ile Phe
305 310 315 320
Ala Ser Val Pro Arg Leu Phe Asn Arg Ile Tyr Asp Lys Val Leu Ala
325 330 335
Gly Val Lys Ala Lys Gly Gly Ile Ala Ala Phe Leu Phe Asn Arg Ala
340 345 350
Tyr Asn Ser Lys Lys Ala Asn Leu Arg Lys Gly Val Leu Glu His Pro
355 360 365
Leu Trp Asp Lys Leu Val Phe Gly Ala Ile Arg Ala Arg Leu Gly Gly
370 375 380
Lys Val Lys His Ile Val Ser Gly Ser Ala Pro Ile Ser Pro Asp Val
385 390 395 400
Met Asp Phe Leu Arg Ile Cys Phe Ser Ala Asp Val Tyr Glu Gly Tyr
405 410 415
Gly Gln Thr Glu Gln Ala Ala Gly Leu Ser Met Ser Tyr Arg Gly Asp
420 425 430
Leu Thr Pro Gly Gln Val Gly Pro Pro Gln Leu Cys Thr Glu Val Lys
435 440 445
Leu Lys Asp Ile Pro Ser Met Asn Tyr Ser Ser Ala Asp Lys Pro Phe
450 455 460
Pro Arg Gly Glu Ile Met Leu Arg Gly Asn Ser Val Phe Lys Gly Tyr
465 470 475 480
Tyr Lys Ala Pro Lys Gln Thr Glu Glu Thr Leu Asp Ala Asp Gly Trp
485 490 495
Ser Ser Thr Gly Asp Val Gly Gln Trp Asp Ala Gln Gly Arg Leu Val
500 505 510
Val Ile Asp Arg Val Lys Asn Ile Phe Lys Leu Ala Gln Gly Glu Tyr
515 520 525
Ile Ala Pro Glu Lys Ile Glu Ala Val Leu Ala Lys His Phe Leu Val
530 535 540
Ala Gln Ile Phe Val Tyr Gly His Ser Leu Gln Ala Thr Ile Val Ala
545 550 555 560
Val Val Val Pro Asp Ala Glu Thr Leu Lys Leu Trp Ala Lys Glu Asn
565 570 575
Lys Leu Gly Asp Lys Ser Tyr Glu Glu Leu Cys Ala Leu Pro Gln Leu
580 585 590
Arg Thr Thr Leu Gln Lys Glu Leu Ala Thr Phe Gly Lys Glu Ser Asp
595 600 605
Leu Lys Gly Phe Glu Ile Pro Lys Asn Ile His Val Ile Ser Glu Gln
610 615 620
Phe Ser Ile Glu Asn Asp Leu Leu Thr Pro Thr Phe Lys Leu Lys Arg
625 630 635 640
His Ala Ala Lys Glu Lys Tyr Asn Ala Glu Ile Asp Arg Met Tyr Ala
645 650 655
Glu Ile Ala
<210> 28
<211> 1980
<212> DNA
<213> Mortierella alpina
<400> 28
atggctactc aaatgtactc ggtggtcgtc cccaacagcc ccgacattcc cggcgaaggc 60
aagccccgcc gtagtgtgct ttgtccagac aagctcctgg agaactaccc ctcagtgaaa 120
gcaggctcaa cgatcacgac cctgtacgag aacttccaag aaggtgttct ccgttcaggc 180
ggcgcccatt ttttgggcca tcgtcccatt gtgaatggcc agcctcaggc ttacaagtgg 240
cagtcgtatg tcgatgtcag caagcgtgtt acgcacttcg gcgctggcct ggctcatctc 300
ggcttgtctc caaagcaaaa ctttggaatt ttctctatca accggcctga gtggaccatg 360
agtgagcttg ctggctatat gcacaactac accagcgtcc ccctctatga tacattggga 420
gtcgccgcga tcgagtatat cgttaaccag actgagatgc agatcatcat tgcttcgtcc 480
gacaaagctt ctatcatcct ccacatgaaa tcagcacttc caaccgttca gacgattgtc 540
gtcatggggg aatttactga cgctctcgtc gcagagggta aggagctcaa catcaacatt 600
gtatcctgga ccgatgtcga aaagagcggt cttgagcggc ctgtcgaagc cgtgcacccc 660
acagccgagg atatcgctac catctgttac acatctggaa ccactggaac gccaaaaggt 720
gctatcttga cccacaagaa ctttgttgcc actatcgctt cattccacat gatggcaaag 780
catggcaggt tcttcattcc ctcgcctgcc gacacacatg tatcctacct gccccttgcc 840
cacgtctttg agcgcctttg ccaggctgtt atgatctcgg gcgctgcgcg tattggttac 900
taccaaggag atacgctgaa gctgctggac gatgttgccg tcctgcatcc caccattttt 960
gcctccgtcc ctcgtctctt taaccgtatc tacgacaagg tgcttgctgg cgtcaaggcc 1020
aagggtggta tcgccgcctt cttgtttaac cgcgcatata attccaagaa ggccaacttg 1080
cgaaagggcg tacttgagca tccgctctgg gacaagctgg tctttggagc gattcgcgcg 1140
cgcttgggtg gcaaggttaa gcacatcgtg tcaggatctg cccccatctc tcctgatgtg 1200
atggatttcc tccgcatctg cttcagcgct gatgtgtatg agggatatgg ccagacggaa 1260
caggcagccg gattaagtat gagctatcgc ggtgatttga ctccaggaca ggttggccca 1320
cctcaactgt gcacagaggt caagttgaag gacatcccta gtatgaacta tagcagcgcg 1380
gacaagcctt tcccccgtgg agaaatcatg cttcgcggaa actctgtgtt caagggctat 1440
tacaaagcac caaagcagac tgaagaaaca ttggatgctg acggttggtc cagtaccgga 1500
gacgttggac agtgggatgc ccaaggccgt ctggtggtca ttgatcgcgt caagaacatc 1560
ttcaagttgg cgcaaggaga atatattgcg cctgaaaaga tcgaggctgt cctcgccaag 1620
cacttcctcg ttgcccagat ttttgtctat gggcactcgc tccaggccac cattgtcgcg 1680
gtggttgtcc ctgatgctga gacgctcaag ttgtgggcta aagaaaacaa gctgggtgac 1740
aagtcttacg aggagctgtg cgctctccct cagcttcgca caaccctcca aaaggagttg 1800
gctacttttg gcaaagaatc ggatctgaag ggctttgaga ttcctaagaa cattcatgtt 1860
atctccgagc agttttcaat tgagaacgat cttttgaccc ccaccttcaa gctgaagaga 1920
catgctgcca aagagaagta taacgccgaa atcgaccgca tgtatgcaga aatcgcttaa 1980
<210> 29
<211> 2113
<212> DNA
<213> Mortierella alpina
<400> 29
tttcctcacc ttccctccgc tgccctctgc tgcacactcc tctggcttat accatccacc 60
cctctagccc cgccacttcg ccgccaacct catccgactc acaccgcaat ggctactcaa 120
atgtactcgg tggtcgtccc caacagcccc gacattcccg gcgaaggcaa gccccgccgt 180
agtgtgcttt gtccagacaa gctcctggag aactacccct cagtgaaagc aggctcaacg 240
atcacgaccc tgtacgagaa cttccaagaa ggtgttctcc gttcaggcgg cgcccatttt 300
ttgggccatc gtcccattgt gaatggccag cctcaggctt acaagtggca gtcgtatgtc 360
gatgtcagca agcgtgttac gcacttcggc gctggcctgg ctcatctcgg cttgtctcca 420
aagcaaaact ttggaatttt ctctatcaac cggcctgagt ggaccatgag tgagcttgct 480
ggctatatgc acaactacac cagcgtcccc ctctatgata cattgggagt cgccgcgatc 540
gagtatatcg ttaaccagac tgagatgcag atcatcattg cttcgtccga caaagcttct 600
atcatcctcc acatgaaatc agcacttcca accgttcaga cgattgtcgt catgggggaa 660
tttactgacg ctctcgtcgc agagggtaag gagctcaaca tcaacattgt atcctggacc 720
gatgtcgaaa agagcggtct tgagcggcct gtcgaagccg tgcaccccac agccgaggat 780
atcgctacca tctgttacac atctggaacc actggaacgc caaaaggtgc tatcttgacc 840
cacaagaact ttgttgccac tatcgcttca ttccacatga tggcaaagca tggcaggttc 900
ttcattccct cgcctgccga cacacatgta tcctacctgc cccttgccca cgtctttgag 960
cgcctttgcc aggctgttat gatctcgggc gctgcgcgta ttggttacta ccaaggagat 1020
acgctgaagc tgctggacga tgttgccgtc ctgcatccca ccatttttgc ctccgtccct 1080
cgtctcttta accgtatcta cgacaaggtg cttgctggcg tcaaggccaa gggtggtatc 1140
gccgccttct tgtttaaccg cgcatataat tccaagaagg ccaacttgcg aaagggcgta 1200
cttgagcatc cgctctggga caagctggtc tttggagcga ttcgcgcgcg cttgggtggc 1260
aaggttaagc acatcgtgtc aggatctgcc cccatctctc ctgatgtgat ggatttcctc 1320
cgcatctgct tcagcgctga tgtgtatgag ggatatggcc agacggaaca ggcagccgga 1380
ttaagtatga gctatcgcgg tgatttgact ccaggacagg ttggcccacc tcaactgtgc 1440
acagaggtca agttgaagga catccctagt atgaactata gcagcgcgga caagcctttc 1500
ccccgtggag aaatcatgct tcgcggaaac tctgtgttca agggctatta caaagcacca 1560
aagcagactg aagaaacatt ggatgctgac ggttggtcca gtaccggaga cgttggacag 1620
tgggatgccc aaggccgtct ggtggtcatt gatcgcgtca agaacatctt caagttggcg 1680
caaggagaat atattgcgcc tgaaaagatc gaggctgtcc tcgccaagca cttcctcgtt 1740
gcccagattt ttgtctatgg gcactcgctc caggccacca ttgtcgcggt ggttgtccct 1800
gatgctgaga cgctcaagtt gtgggctaaa gaaaacaagc tgggtgacaa gtcttacgag 1860
gagctgtgcg ctctccctca gcttcgcaca accctccaaa aggagttggc tacttttggc 1920
aaagaatcgg atctgaaggg ctttgagatt cctaagaaca ttcatgttat ctccgagcag 1980
ttttcaattg agaacgatct tttgaccccc accttcaagc tgaagagaca tgctgccaaa 2040
gagaagtata acgccgaaat cgaccgcatg tatgcagaaa tcgcttaata taaataatgg 2100
ttgtactcaa tat 2113
<210> 30
<211> 2581
<212> DNA
<213> Mortierella alpina
<220>
<221> misc_feature
<222> (1538)..(1937)
<223> n is a, c, g, or t
<400> 30
atggctactc aaatgtactc ggtggtcgtc cccaacagcc ccgacattcc cggcgaaggc 60
aagccccgcc gtagtgtgct ttgtccagac aagctcctgg agaactaccc ctcagtgaaa 120
gcaggctcaa cgatcacgac cctgtacgag aacttccaag aaggtgttct ccgttcaggt 180
aacaacgctt accacgtcga cgttcgcctc gcaatggcac ctttcccttc ggtcaaactt 240
cttaaatgtt tcctttacaa tcgtaggcgg cgcccatttt ttgggccatc gtcccattgt 300
gaatggccag cctcaggctt acaagtggca gtcgtatgtc gatgtcagca agcgtgttac 360
gcacttcggc gctggcctgg ctcatctcgg cttgtctcca aagcaaaact ttggaatttt 420
ctctatcaac cggcctgagt gggtaggtga tgccttgctt tcttttgccc actcgtcgtc 480
aaggtaacgc agggcctgcg ccgattttta acagtacatt ctatgcactg tcgttacata 540
gaccatgagt gagcttgctg gctatatgca caactacacc agcgtccccc tctatgatac 600
attgggagtc gccgcgatcg agtatatcgt taaccagact gagatgcaga tcatcattgc 660
ttcgtccgac aaagcttcta tcatcctcca catgaaatca gcacttccaa ccgttcagac 720
gattgtcgtc atgggggaat ttactgacgc tctcgtcgca gagggtaagg agctcaacat 780
caacattgta tcctggaccg atgtcgaaaa gagcggtctt gagcggcctg tcgaagccgt 840
gcaccccaca gccgaggata tcgctaccat ctgttacaca tctggaacca ctggaacgcc 900
aaagtaagtc aagatcatta catggtgagc ctccattgct tggactgaac agtctactca 960
cgcaggttct tcgtttactt tgacatgcgc agaggtgcta tcttgaccca caagaacttt 1020
gttgccacta tcgcttcatt ccacatgatg gcaaagcatg gcaggttctt cattccctcg 1080
cctgccgaca cacatgtatc ctacctgccc cttgcccacg tctttgagcg cctttgccag 1140
gctgttatga tctcgggcgc tgcgcgtatt ggttactacc aaggagatac gctgaagctg 1200
ctggacgatg ttgccgtcct gcatcccacc atttttgcct ccgtccctcg tctctttaac 1260
cgtatctacg acaaggtgct tgctggcgtc aaggccaagg gtggtatcgc cgccttcttg 1320
tttaaccgcg catataattc caagaaggcc aacttgcgaa agggcgtact tgagcatccg 1380
ctctgggaca agctggtctt tggagcgatt cgcgcgcgct tgggtggcaa ggttaagcac 1440
atcgtgtcag gatctgcccc catctctcct gatgtgatgg atttcctccg catctgcttc 1500
agcgctgatg tgtatgaggg atatggccag acggaacnnn nnnnnnnnnn nnnnnnnnnn 1560
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 1620
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 1680
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 1740
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 1800
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 1860
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 1920
nnnnnnnnnn nnnnnnntta ccccacgact ttcttttgtc tcggcctgtt ccgcaatcat 1980
agtaccggag acgttggaca gtgggatgcc caaggccgtc tggtggtcat tgatcgcgtc 2040
aagaacatct tcaagttggc gcaaggagaa tatattgcgc ctgaaaagat cgaggctgtc 2100
ctcgccaagc acttcctcgt tgcccagatt tttgtctatg ggcactcgct ccaggccacc 2160
attgtcgcgg tggttgtccc tgatgctgag acgctcaagt tgtgggctaa agaaaacaag 2220
ctgggtgaca agtcttacga ggagctgtgc gctctccctc agcttcgcac aaccctccaa 2280
aaggagttgg ctacttttgg caaagaatcg gatctgaagg gctttgagat tcctaagaac 2340
attcatgtta tctccgagca gttttcaatt gagaacgatc ttttggtgag tgtgcttccg 2400
agtatgaacc actgtgtcgt atgtacgttc gcattctgaa agctaactct ccgtaccctt 2460
ctacttcaat tgtgaattct cctcttgtcg catacagacc cccaccttca agctgaagag 2520
acatgctgcc aaagagaagt ataacgccga aatcgaccgc atgtatgcag aaatcgctta 2580
a 2581
<210> 31
<211> 1824
<212> DNA
<213> Mortierella alpina
<400> 31
atgcacattc tgaatgccac aagaccattc tccaggctgt ctccaaccgt aaggagacct 60
tggctaggac tcggccagac gcgcccttat gctatcgcgc agaccgaggc cagtcctagg 120
ctgtcatatg tccgaggcac caccgtcggc acccagctat gcgaggatcc catcggtgcg 180
tactgggaca gggtcgtcaa tcgtcacggt gaccgcctcg gacttgtcgt caagcacgag 240
caggacctgc actggacctt ccgtcagttt ggcgggcagg ttgatagcct ctgccgtggg 300
ctctatgagt ctggcttgcg aaagggtgat cgactcgctg tctggatgcc gaacaacagc 360
gcgtgggcca cgctccagta tgctactgcc aagtctggca tcattctggt aactctcaac 420
cctgcgtacc ggaggcaaga gctactgcag acattgtctt tggtcgagtg caagtcattg 480
gtctatgtgc caagtctaaa gacttcgaat tatagcgaga tgttgctcga cctcctacca 540
gaactccagt accagtcgcc aaatcagctc ttgaccgaga agctaccctc acttcgtcaa 600
gtcatcgtgt ttgacaatgg ctcgcaagtc ccagagacag caaaattgaa gggattgaca 660
aagtatcagg atttgttgat caagaatccc tcgaccgctg tcgacggagc tcttgaaaag 720
gaacggctcg ctatcgacaa cagggatatc atcaatctcc agtttactag cggaactaca 780
ggccttccca agggcgtctc gctgtcgcat cgaaacatct tgaataacgg cattcatatt 840
ggagataaca tgcgactgac ggaaaaggat ttgctttgct gcccggtccc gctctttcac 900
tgctttggac tggtgctggc aagcttggct gcaatgaccc atggcgcagg aattatttac 960
ccttcgcagt cctttgatgc tgaggccaca ctgagggctg tttctgagga gggtgctaca 1020
gcgctgcatg gcgtgccgac tatgctgttg gaagagatga accaccccaa ctttgcaaag 1080
tacaaccttt cgacacttcg gacaggaatt gcagctggat cccctgtgcc cattgaggtc 1140
atgaagaacg tgcagacaaa gatgaacctg aaggagctga ctatctgtta cggcatgacc 1200
gagacctcgc ccgtgtcctt catgacactc acaacggatg aattacggga tcgatgtgag 1260
actgttggac gaattatgcc acatctcgag gccaaagtcg tcaaccctga gacgggagag 1320
actttgccag tgaattcatc aggagagttg tgcacgcgcg ggtatgctgt gatggagggt 1380
ggttactggc gatcccagga gcagacagat gcagtggtgg acaaggatgg ctggatgcac 1440
actggcgaca ctgccgtgct cgatgaccgt ggcttttgca ggatcgacgg acgcatcaag 1500
gacatggtga tccgaggagg cgaaaaaatc catcctgtag aggtcgagaa ctgtctcttt 1560
gagatggacg gcgtcaagaa cgtgtctgtg attggcgttc ccgacaagcg gtatggcgag 1620
caggtgtgtg cgtggatctc gaccaaggac gggaagacgg tcagtctgga ggcagtgcaa 1680
aagttctgtg agggcaagat tgcgcactac aaggtgccgc ggtatgtggt tgtggtggag 1740
tccaatgagt tcccgactac cccctcgggc aagatccaaa agaatgtgat gcgcgagctg 1800
accaaggcga agctgcagct gcct 1824
<210> 32
<211> 608
<212> PRT
<213> Mortierella alpina
<400> 32
Met His Ile Leu Asn Ala Thr Arg Pro Phe Ser Arg Leu Ser Pro Thr
1 5 10 15
Val Arg Arg Pro Trp Leu Gly Leu Gly Gln Thr Arg Pro Tyr Ala Ile
20 25 30
Ala Gln Thr Glu Ala Ser Pro Arg Leu Ser Tyr Val Arg Gly Thr Thr
35 40 45
Val Gly Thr Gln Leu Cys Glu Asp Pro Ile Gly Ala Tyr Trp Asp Arg
50 55 60
Val Val Asn Arg His Gly Asp Arg Leu Gly Leu Val Val Lys His Glu
65 70 75 80
Gln Asp Leu His Trp Thr Phe Arg Gln Phe Gly Gly Gln Val Asp Ser
85 90 95
Leu Cys Arg Gly Leu Tyr Glu Ser Gly Leu Arg Lys Gly Asp Arg Leu
100 105 110
Ala Val Trp Met Pro Asn Asn Ser Ala Trp Ala Thr Leu Gln Tyr Ala
115 120 125
Thr Ala Lys Ser Gly Ile Ile Leu Val Thr Leu Asn Pro Ala Tyr Arg
130 135 140
Arg Gln Glu Leu Leu Gln Thr Leu Ser Leu Val Glu Cys Lys Ser Leu
145 150 155 160
Val Tyr Val Pro Ser Leu Lys Thr Ser Asn Tyr Ser Glu Met Leu Leu
165 170 175
Asp Leu Leu Pro Glu Leu Gln Tyr Gln Ser Pro Asn Gln Leu Leu Thr
180 185 190
Glu Lys Leu Pro Ser Leu Arg Gln Val Ile Val Phe Asp Asn Gly Ser
195 200 205
Gln Val Pro Glu Thr Ala Lys Leu Lys Gly Leu Thr Lys Tyr Gln Asp
210 215 220
Leu Leu Ile Lys Asn Pro Ser Thr Ala Val Asp Gly Ala Leu Glu Lys
225 230 235 240
Glu Arg Leu Ala Ile Asp Asn Arg Asp Ile Ile Asn Leu Gln Phe Thr
245 250 255
Ser Gly Thr Thr Gly Leu Pro Lys Gly Val Ser Leu Ser His Arg Asn
260 265 270
Ile Leu Asn Asn Gly Ile His Ile Gly Asp Asn Met Arg Leu Thr Glu
275 280 285
Lys Asp Leu Leu Cys Cys Pro Val Pro Leu Phe His Cys Phe Gly Leu
290 295 300
Val Leu Ala Ser Leu Ala Ala Met Thr His Gly Ala Gly Ile Ile Tyr
305 310 315 320
Pro Ser Gln Ser Phe Asp Ala Glu Ala Thr Leu Arg Ala Val Ser Glu
325 330 335
Glu Gly Ala Thr Ala Leu His Gly Val Pro Thr Met Leu Leu Glu Glu
340 345 350
Met Asn His Pro Asn Phe Ala Lys Tyr Asn Leu Ser Thr Leu Arg Thr
355 360 365
Gly Ile Ala Ala Gly Ser Pro Val Pro Ile Glu Val Met Lys Asn Val
370 375 380
Gln Thr Lys Met Asn Leu Lys Glu Leu Thr Ile Cys Tyr Gly Met Thr
385 390 395 400
Glu Thr Ser Pro Val Ser Phe Met Thr Leu Thr Thr Asp Glu Leu Arg
405 410 415
Asp Arg Cys Glu Thr Val Gly Arg Ile Met Pro His Leu Glu Ala Lys
420 425 430
Val Val Asn Pro Glu Thr Gly Glu Thr Leu Pro Val Asn Ser Ser Gly
435 440 445
Glu Leu Cys Thr Arg Gly Tyr Ala Val Met Glu Gly Gly Tyr Trp Arg
450 455 460
Ser Gln Glu Gln Thr Asp Ala Val Val Asp Lys Asp Gly Trp Met His
465 470 475 480
Thr Gly Asp Thr Ala Val Leu Asp Asp Arg Gly Phe Cys Arg Ile Asp
485 490 495
Gly Arg Ile Lys Asp Met Val Ile Arg Gly Gly Glu Lys Ile His Pro
500 505 510
Val Glu Val Glu Asn Cys Leu Phe Glu Met Asp Gly Val Lys Asn Val
515 520 525
Ser Val Ile Gly Val Pro Asp Lys Arg Tyr Gly Glu Gln Val Cys Ala
530 535 540
Trp Ile Ser Thr Lys Asp Gly Lys Thr Val Ser Leu Glu Ala Val Gln
545 550 555 560
Lys Phe Cys Glu Gly Lys Ile Ala His Tyr Lys Val Pro Arg Tyr Val
565 570 575
Val Val Val Glu Ser Asn Glu Phe Pro Thr Thr Pro Ser Gly Lys Ile
580 585 590
Gln Lys Asn Val Met Arg Glu Leu Thr Lys Ala Lys Leu Gln Leu Pro
595 600 605
<210> 33
<211> 1827
<212> DNA
<213> Mortierella alpina
<400> 33
atgcacattc tgaatgccac aagaccattc tccaggctgt ctccaaccgt aaggagacct 60
tggctaggac tcggccagac gcgcccttat gctatcgcgc agaccgaggc cagtcctagg 120
ctgtcatatg tccgaggcac caccgtcggc acccagctat gcgaggatcc catcggtgcg 180
tactgggaca gggtcgtcaa tcgtcacggt gaccgcctcg gacttgtcgt caagcacgag 240
caggacctgc actggacctt ccgtcagttt ggcgggcagg ttgatagcct ctgccgtggg 300
ctctatgagt ctggcttgcg aaagggtgat cgactcgctg tctggatgcc gaacaacagc 360
gcgtgggcca cgctccagta tgctactgcc aagtctggca tcattctggt aactctcaac 420
cctgcgtacc ggaggcaaga gctactgcag acattgtctt tggtcgagtg caagtcattg 480
gtctatgtgc caagtctaaa gacttcgaat tatagcgaga tgttgctcga cctcctacca 540
gaactccagt accagtcgcc aaatcagctc ttgaccgaga agctaccctc acttcgtcaa 600
gtcatcgtgt ttgacaatgg ctcgcaagtc ccagagacag caaaattgaa gggattgaca 660
aagtatcagg atttgttgat caagaatccc tcgaccgctg tcgacggagc tcttgaaaag 720
gaacggctcg ctatcgacaa cagggatatc atcaatctcc agtttactag cggaactaca 780
ggccttccca agggcgtctc gctgtcgcat cgaaacatct tgaataacgg cattcatatt 840
ggagataaca tgcgactgac ggaaaaggat ttgctttgct gcccggtccc gctctttcac 900
tgctttggac tggtgctggc aagcttggct gcaatgaccc atggcgcagg aattatttac 960
ccttcgcagt cctttgatgc tgaggccaca ctgagggctg tttctgagga gggtgctaca 1020
gcgctgcatg gcgtgccgac tatgctgttg gaagagatga accaccccaa ctttgcaaag 1080
tacaaccttt cgacacttcg gacaggaatt gcagctggat cccctgtgcc cattgaggtc 1140
atgaagaacg tgcagacaaa gatgaacctg aaggagctga ctatctgtta cggcatgacc 1200
gagacctcgc ccgtgtcctt catgacactc acaacggatg aattacggga tcgatgtgag 1260
actgttggac gaattatgcc acatctcgag gccaaagtcg tcaaccctga gacgggagag 1320
actttgccag tgaattcatc aggagagttg tgcacgcgcg ggtatgctgt gatggagggt 1380
ggttactggc gatcccagga gcagacagat gcagtggtgg acaaggatgg ctggatgcac 1440
actggcgaca ctgccgtgct cgatgaccgt ggcttttgca ggatcgacgg acgcatcaag 1500
gacatggtga tccgaggagg cgaaaaaatc catcctgtag aggtcgagaa ctgtctcttt 1560
gagatggacg gcgtcaagaa cgtgtctgtg attggcgttc ccgacaagcg gtatggcgag 1620
caggtgtgtg cgtggatctc gaccaaggac gggaagacgg tcagtctgga ggcagtgcaa 1680
aagttctgtg agggcaagat tgcgcactac aaggtgccgc ggtatgtggt tgtggtggag 1740
tccaatgagt tcccgactac cccctcgggc aagatccaaa agaatgtgat gcgcgagctg 1800
accaaggcga agctgcagct gccttga 1827
<210> 34
<211> 2087
<212> DNA
<213> Mortierella alpina
<400> 34
ggcacgaggc tctactctcc attgcccact cactcattgc ccctctgtcc atcaccggca 60
ttgctcgttc gcgccttccg ccactccact ctttctttca ttccttcttt acaacggcca 120
tctccccctc gctctgcgct tctcccatcc acgctaacaa tgcacattct gaatgccaca 180
agaccattct ccaggctgtc tccaaccgta aggagacctt ggctaggact cggccagacg 240
cgcccttatg ctatcgcgca gaccgaggcc agtcctaggc tgtcatatgt ccgaggcacc 300
accgtcggca cccagctatg cgaggatccc atcggtgcgt actgggacag ggtcgtcaat 360
cgtcacggtg accgcctcgg acttgtcgtc aagcacgagc aggacctgca ctggaccttc 420
cgtcagtttg gcgggcaggt tgatagcctc tgccgtgggc tctatgagtc tggcttgcga 480
aagggtgatc gactcgctgt ctggatgccg aacaacagcg cgtgggccac gctccagtat 540
gctactgcca agtctggcat cattctggta actctcaacc ctgcgtaccg gaggcaagag 600
ctactgcaga cattgtcttt ggtcgagtgc aagtcattgg tctatgtgcc aagtctaaag 660
acttcgaatt atagcgagat gttgctcgac ctcctaccag aactccagta ccagtcgcca 720
aatcagctct tgaccgagaa gctaccctca cttcgtcaag tcatcgtgtt tgacaatggc 780
tcgcaagtcc cagagacagc aaaattgaag ggattgacaa agtatcagga tttgttgatc 840
aagaatccct cgaccgctgt cgacggagct cttgaaaagg aacggctcgc tatcgacaac 900
agggatatca tcaatctcca gtttactagc ggaactacag gccttcccaa gggcgtctcg 960
ctgtcgcatc gaaacatctt gaataacggc attcatattg gagataacat gcgactgacg 1020
gaaaaggatt tgctttgctg cccggtcccg ctctttcact gctttggact ggtgctggca 1080
agcttggctg caatgaccca tggcgcagga attatttacc cttcgcagtc ctttgatgct 1140
gaggccacac tgagggctgt ttctgaggag ggtgctacag cgctgcatgg cgtgccgact 1200
atgctgttgg aagagatgaa ccaccccaac tttgcaaagt acaacctttc gacacttcgg 1260
acaggaattg cagctggatc ccctgtgccc attgaggtca tgaagaacgt gcagacaaag 1320
atgaacctga aggagctgac tatctgttac ggcatgaccg agacctcgcc cgtgtccttc 1380
atgacactca caacggatga attacgggat cgatgtgaga ctgttggacg aattatgcca 1440
catctcgagg ccaaagtcgt caaccctgag acgggagaga ctttgccagt gaattcatca 1500
ggagagttgt gcacgcgcgg gtatgctgtg atggagggtg gttactggcg atcccaggag 1560
cagacagatg cagtggtgga caaggatggc tggatgcaca ctggcgacac tgccgtgctc 1620
gatgaccgtg gcttttgcag gatcgacgga cgcatcaagg acatggtgat ccgaggaggc 1680
gaaaaaatcc atcctgtaga ggtcgagaac tgtctctttg agatggacgg cgtcaagaac 1740
gtgtctgtga ttggcgttcc cgacaagcgg tatggcgagc aggtgtgtgc gtggatctcg 1800
accaaggacg ggaagacggt cagtctggag gcagtgcaaa agttctgtga gggcaagatt 1860
gcgcactaca aggtgccgcg gtatgtggtt gtggtggagt ccaatgagtt cccgactacc 1920
ccctcgggca agatccaaaa gaatgtgatg cgcgagctga ccaaggcgaa gctgcagctg 1980
ccttgatggt actaggatat ggagccgacg aaagtaataa aggcgtatgc tggcatggcg 2040
caagatctga gccctgcggt gaggtgcatt cagtgacgcc attagaa 2087
<210> 35
<211> 2242
<212> DNA
<213> Mortierella alpina
<400> 35
atgcacattc tgaatgccac aagaccattc tccaggctgt ctccaaccgt aaggagacct 60
tggctaggac tcggccagac gcgcccttat gctatcgcgc agaccgaggc cagtcctagg 120
ctgtcatatg tccgaggcac caccgtcggc acccagctat gcgaggatcc catcggtgcg 180
tactgggaca gggtcgtcaa tcgtcacggt gaccgcctcg gacttgtcgt caagcacgag 240
caggacctgc actggacctt ccgtcagttt ggcgggcagg ttgatagcct ctgccgtggg 300
ctctatgagt ctggcttgcg aaagggtgat cgactcgcgt atgtacactc tcgtcgtgcc 360
tgaagcgctt gaagggaaaa actgtattga acccccgccc gctgcattag cgtcgtttca 420
acatttggct aattttttct ttccctcgtc ctttgccgat gcaaacagtg tctggatgcc 480
gaacaacagc gcgtgggcca cgctccagta tgctactgcc aagtctggca tcattctggt 540
aactctcaac cctgcgtatg tactgcatgt cataatcata ctcgcgtcgc ctcaaaaata 600
tgcttttttg acgtgtttac ttatcctgcg cgttctcata acaggtaccg gaggcaagag 660
ctactgcaga cattgtcttt ggtcgagtgc aagtcattgg tctatgtgcc aagtctaaag 720
acttcgaatt atagcgagat gttgctcgac ctcctaccag aactccagta ccagtcgcca 780
aatcagctct tgaccgagaa gctaccctca cttcgtcaag tcatcgtgtt tgacaatggc 840
tcgcaagtcc cagagacagc aaaattgaag ggattgacaa agtatcagga tttgttgatc 900
aagaatccct cgaccgctgt cgacggagct cttgaaaagg aacggctcgc tatcgacaac 960
agggatatca tcaatctcca gtttactagc ggaactacag gccttcccaa gtatgtgtca 1020
gaaattgaac ttgacacgcg atgcataatc gacgttcaac cacccttgtc ctgacaccgt 1080
cttgcatcta caatactatg gtccaaattt taggggcgtc tcgctgtcgc atcgaaacat 1140
cttgaataac ggcattcata ttggagataa catgcgactg acggaaaagg atttgctttg 1200
ctgcccggtc ccgctctttc actgctttgg actggtgctg gcaagcttgg ctgcaatgac 1260
ccatggcgca ggaattattt acccttcgca gtcctttgat gctgaggcca cactgagggc 1320
tgtttctgag gagggtgcta cagcgctgca tggcgtgccg actatgctgt tggaagagat 1380
gaaccacccc aactttgcaa agtacaacct ttcgacactt cggacaggaa ttgcagctgg 1440
atcccctgtg cccattgagg tcatgaagaa cgtgcagaca aagatgaacc tgaaggagct 1500
gactatctgt tacggcatga ccgagacctc gcccgtgtcc ttcatgacac tcacaacgga 1560
tgaattacgg gatcgatgtg agactgttgg acgaattatg ccacatctcg aggccaaagg 1620
taaaacggct gtcagcctgg tgttcataat tttgtcttga atctcggtgg tctgttgcta 1680
attttgggta cattgcttgc acaatacggt agtcgtcaac cctgagacgg gagagacttt 1740
gccagtgaat tcatcaggag agttgtgcac gcgcgggtat gctgtgatgg agggtggtta 1800
ctggcgatcc caggagcaga cagatgcagt ggtggacaag gatggctgga tgcacactgg 1860
cgacactgcc gtgctcgatg accgtggctt ttgcaggatc gacggacgca tcaaggacat 1920
ggtgatccga ggaggcgaaa aaatccatcc tgtagaggtc gagaactgtc tctttgagat 1980
ggacggcgtc aagaacgtgt ctgtgattgg cgttcccgac aagcggtatg gcgagcaggt 2040
gtgtgcgtgg atctcgacca aggacgggaa gacggtcagt ctggaggcag tgcaaaagtt 2100
ctgtgagggc aagattgcgc actacaaggt gccgcggtat gtggttgtgg tggagtccaa 2160
tgagttcccg actaccccct cgggcaagat ccaaaagaat gtgatgcgcg agctgaccaa 2220
ggcgaagctg cagctgcctt ga 2242
<210> 36
<211> 2076
<212> DNA
<213> Mortierella alpina
<400> 36
atgccttcct tcaaaaagta caacctcgac aagcagagtg ttgaggtccc tggcactcgg 60
aagcctggcg cttcaggcca ctacagacat gccgcctacg gcgatgctct tgtcaccaac 120
atccgtgagg cccctcatat cgaaactctt tacgacatgt ggcagaactc tgtgacaaag 180
tatggcggca atgacttttt gggtcaccgt cccttcaaca ctgttgccca gacctatggt 240
ggctacagtt gggagacgta ccgccagatt aaccagcgcg ttaatgcgtt cggcagcggt 300
atcatgcacc tgaacgaggt gatcctcggc aaccgccagc ttaaccgctg ggcgttgggc 360
atctggtccc acggtcgccc tgagtggttc attacggaga tgagctgcaa ctgctacaac 420
ctcatttctg ttgcattgta cgacaccctt ggacctgatg cagtcgagta cattgtcaac 480
cacgccgaga ttgagattgt tgtctcaagt gccaaccata tcgcctcttt gctcgagaac 540
gccgagaagc tccccaagct caaggccatt gtcagcatgg atgctcttca cgataccgtc 600
cccgtccccg gcgccacctc tgccgcacag gttcttcgtg cctggggtgc acaaaagggc 660
atcaaggtct atgactttaa cgagattgag tccctcggtg ccgagttccc tcgcaagcac 720
ctgcctccca ccgctgatga ggtcgcctcc atctgctaca cttccggcac caccggtcag 780
cctaaaggag ccatgctcac ccacagaaac tttgttgcta ctgttggtac caaccgcgag 840
ggcatgcttc tcaccgagga cgacgttttg atcagtttct tgcccttggc tcacattatg 900
ggacgcgtca ttgacacttg ctcgatgtac agcggtggca agattggtta cttccgtgga 960
gatattcttt tgcttctcga ggacgttgct gagctccgtc ccacattctt cccagctgtg 1020
cctcgcctct tgaaccgcat ttatgccaag ctcgttgcct ctaccattga ggcccccggt 1080
ttggtcggtg ccttggcccg tcgcggtgtc gccgccaaga tggccaacct tgctgccgga 1140
aagggtgtca accacgctct ctgggacaga ctgctgttca acaaggtcaa gatggccctg 1200
ggtggtcgcg ttcaggtcat cctgactgga tctgcgccca ttgccaagga ggttctcagc 1260
ttcttgagaa ttgctttcgg atgcgtggtt ttggagggat acggctccac tgagggcatg 1320
gctaccgcca ccatcacaat ggctgatgag tacattcctg gtcacattgg ctgccctcgt 1380
gctggatgcg agctcaagct ggtggatgtg cccgcgatga actacctctc taccgaccag 1440
ccctaccccc gtggagagat ctggatccgt ggtgacactg ttttcaaagg atacttcaag 1500
gacgagaaga acactagtga gactatcgac tctgaaggct ggctcgctac cggtgatatt 1560
ggatttgtgg ataagcgtgg atgctttacg atcattgacc gcaagaagaa catcttcaag 1620
ttggcacaag gtgaatacat tgctcctgaa aagattgaga acgtcttggg cgcacgctgc 1680
aatcttgtcc agcagatcta tgttcatggt gattcgcttg agtccacctt ggtcgcagtt 1740
cttattcccg agcccgagac cttcctgccc ttcgcgaatg ccattgctgg tgcctccgtc 1800
actgctggag atgttgaggg tttgaacaag ctgtgccaag atcccaaggt caagatcgcg 1860
gttctgaagg agttggagaa ggccggaaag gccggtgcga tgcgcggatt cgagttcgtg 1920
aagcgtgtcc acttgaccac ggatgcattc tcggtcgaca acggcatgat gacacctacc 1980
ttcaaggtcc gtcgcccaca agtagccgag catttcaggg agcaaatcac ggccatgtat 2040
aaggagatca atgcctcgac ccctgttgcc aagctg 2076
<210> 37
<211> 692
<212> PRT
<213> Mortierella alpina
<400> 37
Met Pro Ser Phe Lys Lys Tyr Asn Leu Asp Lys Gln Ser Val Glu Val
1 5 10 15
Pro Gly Thr Arg Lys Pro Gly Ala Ser Gly His Tyr Arg His Ala Ala
20 25 30
Tyr Gly Asp Ala Leu Val Thr Asn Ile Arg Glu Ala Pro His Ile Glu
35 40 45
Thr Leu Tyr Asp Met Trp Gln Asn Ser Val Thr Lys Tyr Gly Gly Asn
50 55 60
Asp Phe Leu Gly His Arg Pro Phe Asn Thr Val Ala Gln Thr Tyr Gly
65 70 75 80
Gly Tyr Ser Trp Glu Thr Tyr Arg Gln Ile Asn Gln Arg Val Asn Ala
85 90 95
Phe Gly Ser Gly Ile Met His Leu Asn Glu Val Ile Leu Gly Asn Arg
100 105 110
Gln Leu Asn Arg Trp Ala Leu Gly Ile Trp Ser His Gly Arg Pro Glu
115 120 125
Trp Phe Ile Thr Glu Met Ser Cys Asn Cys Tyr Asn Leu Ile Ser Val
130 135 140
Ala Leu Tyr Asp Thr Leu Gly Pro Asp Ala Val Glu Tyr Ile Val Asn
145 150 155 160
His Ala Glu Ile Glu Ile Val Val Ser Ser Ala Asn His Ile Ala Ser
165 170 175
Leu Leu Glu Asn Ala Glu Lys Leu Pro Lys Leu Lys Ala Ile Val Ser
180 185 190
Met Asp Ala Leu His Asp Thr Val Pro Val Pro Gly Ala Thr Ser Ala
195 200 205
Ala Gln Val Leu Arg Ala Trp Gly Ala Gln Lys Gly Ile Lys Val Tyr
210 215 220
Asp Phe Asn Glu Ile Glu Ser Leu Gly Ala Glu Phe Pro Arg Lys His
225 230 235 240
Leu Pro Pro Thr Ala Asp Glu Val Ala Ser Ile Cys Tyr Thr Ser Gly
245 250 255
Thr Thr Gly Gln Pro Lys Gly Ala Met Leu Thr His Arg Asn Phe Val
260 265 270
Ala Thr Val Gly Thr Asn Arg Glu Gly Met Leu Leu Thr Glu Asp Asp
275 280 285
Val Leu Ile Ser Phe Leu Pro Leu Ala His Ile Met Gly Arg Val Ile
290 295 300
Asp Thr Cys Ser Met Tyr Ser Gly Gly Lys Ile Gly Tyr Phe Arg Gly
305 310 315 320
Asp Ile Leu Leu Leu Leu Glu Asp Val Ala Glu Leu Arg Pro Thr Phe
325 330 335
Phe Pro Ala Val Pro Arg Leu Leu Asn Arg Ile Tyr Ala Lys Leu Val
340 345 350
Ala Ser Thr Ile Glu Ala Pro Gly Leu Val Gly Ala Leu Ala Arg Arg
355 360 365
Gly Val Ala Ala Lys Met Ala Asn Leu Ala Ala Gly Lys Gly Val Asn
370 375 380
His Ala Leu Trp Asp Arg Leu Leu Phe Asn Lys Val Lys Met Ala Leu
385 390 395 400
Gly Gly Arg Val Gln Val Ile Leu Thr Gly Ser Ala Pro Ile Ala Lys
405 410 415
Glu Val Leu Ser Phe Leu Arg Ile Ala Phe Gly Cys Val Val Leu Glu
420 425 430
Gly Tyr Gly Ser Thr Glu Gly Met Ala Thr Ala Thr Ile Thr Met Ala
435 440 445
Asp Glu Tyr Ile Pro Gly His Ile Gly Cys Pro Arg Ala Gly Cys Glu
450 455 460
Leu Lys Leu Val Asp Val Pro Ala Met Asn Tyr Leu Ser Thr Asp Gln
465 470 475 480
Pro Tyr Pro Arg Gly Glu Ile Trp Ile Arg Gly Asp Thr Val Phe Lys
485 490 495
Gly Tyr Phe Lys Asp Glu Lys Asn Thr Ser Glu Thr Ile Asp Ser Glu
500 505 510
Gly Trp Leu Ala Thr Gly Asp Ile Gly Phe Val Asp Lys Arg Gly Cys
515 520 525
Phe Thr Ile Ile Asp Arg Lys Lys Asn Ile Phe Lys Leu Ala Gln Gly
530 535 540
Glu Tyr Ile Ala Pro Glu Lys Ile Glu Asn Val Leu Gly Ala Arg Cys
545 550 555 560
Asn Leu Val Gln Gln Ile Tyr Val His Gly Asp Ser Leu Glu Ser Thr
565 570 575
Leu Val Ala Val Leu Ile Pro Glu Pro Glu Thr Phe Leu Pro Phe Ala
580 585 590
Asn Ala Ile Ala Gly Ala Ser Val Thr Ala Gly Asp Val Glu Gly Leu
595 600 605
Asn Lys Leu Cys Gln Asp Pro Lys Val Lys Ile Ala Val Leu Lys Glu
610 615 620
Leu Glu Lys Ala Gly Lys Ala Gly Ala Met Arg Gly Phe Glu Phe Val
625 630 635 640
Lys Arg Val His Leu Thr Thr Asp Ala Phe Ser Val Asp Asn Gly Met
645 650 655
Met Thr Pro Thr Phe Lys Val Arg Arg Pro Gln Val Ala Glu His Phe
660 665 670
Arg Glu Gln Ile Thr Ala Met Tyr Lys Glu Ile Asn Ala Ser Thr Pro
675 680 685
Val Ala Lys Leu
690
<210> 38
<211> 2079
<212> DNA
<213> Mortierella alpina
<400> 38
atgccttcct tcaaaaagta caacctcgac aagcagagtg ttgaggtccc tggcactcgg 60
aagcctggcg cttcaggcca ctacagacat gccgcctacg gcgatgctct tgtcaccaac 120
atccgtgagg cccctcatat cgaaactctt tacgacatgt ggcagaactc tgtgacaaag 180
tatggcggca atgacttttt gggtcaccgt cccttcaaca ctgttgccca gacctatggt 240
ggctacagtt gggagacgta ccgccagatt aaccagcgcg ttaatgcgtt cggcagcggt 300
atcatgcacc tgaacgaggt gatcctcggc aaccgccagc ttaaccgctg ggcgttgggc 360
atctggtccc acggtcgccc tgagtggttc attacggaga tgagctgcaa ctgctacaac 420
ctcatttctg ttgcattgta cgacaccctt ggacctgatg cagtcgagta cattgtcaac 480
cacgccgaga ttgagattgt tgtctcaagt gccaaccata tcgcctcttt gctcgagaac 540
gccgagaagc tccccaagct caaggccatt gtcagcatgg atgctcttca cgataccgtc 600
cccgtccccg gcgccacctc tgccgcacag gttcttcgtg cctggggtgc acaaaagggc 660
atcaaggtct atgactttaa cgagattgag tccctcggtg ccgagttccc tcgcaagcac 720
ctgcctccca ccgctgatga ggtcgcctcc atctgctaca cttccggcac caccggtcag 780
cctaaaggag ccatgctcac ccacagaaac tttgttgcta ctgttggtac caaccgcgag 840
ggcatgcttc tcaccgagga cgacgttttg atcagtttct tgcccttggc tcacattatg 900
ggacgcgtca ttgacacttg ctcgatgtac agcggtggca agattggtta cttccgtgga 960
gatattcttt tgcttctcga ggacgttgct gagctccgtc ccacattctt cccagctgtg 1020
cctcgcctct tgaaccgcat ttatgccaag ctcgttgcct ctaccattga ggcccccggt 1080
ttggtcggtg ccttggcccg tcgcggtgtc gccgccaaga tggccaacct tgctgccgga 1140
aagggtgtca accacgctct ctgggacaga ctgctgttca acaaggtcaa gatggccctg 1200
ggtggtcgcg ttcaggtcat cctgactgga tctgcgccca ttgccaagga ggttctcagc 1260
ttcttgagaa ttgctttcgg atgcgtggtt ttggagggat acggctccac tgagggcatg 1320
gctaccgcca ccatcacaat ggctgatgag tacattcctg gtcacattgg ctgccctcgt 1380
gctggatgcg agctcaagct ggtggatgtg cccgcgatga actacctctc taccgaccag 1440
ccctaccccc gtggagagat ctggatccgt ggtgacactg ttttcaaagg atacttcaag 1500
gacgagaaga acactagtga gactatcgac tctgaaggct ggctcgctac cggtgatatt 1560
ggatttgtgg ataagcgtgg atgctttacg atcattgacc gcaagaagaa catcttcaag 1620
ttggcacaag gtgaatacat tgctcctgaa aagattgaga acgtcttggg cgcacgctgc 1680
aatcttgtcc agcagatcta tgttcatggt gattcgcttg agtccacctt ggtcgcagtt 1740
cttattcccg agcccgagac cttcctgccc ttcgcgaatg ccattgctgg tgcctccgtc 1800
actgctggag atgttgaggg tttgaacaag ctgtgccaag atcccaaggt caagatcgcg 1860
gttctgaagg agttggagaa ggccggaaag gccggtgcga tgcgcggatt cgagttcgtg 1920
aagcgtgtcc acttgaccac ggatgcattc tcggtcgaca acggcatgat gacacctacc 1980
ttcaaggtcc gtcgcccaca agtagccgag catttcaggg agcaaatcac ggccatgtat 2040
aaggagatca atgcctcgac ccctgttgcc aagctgtag 2079
<210> 39
<211> 2288
<212> DNA
<213> Mortierella alpina
<400> 39
tgcttttctc ttcttcgtca ccctccttct tcccattcct ccggtcctcc tccgttccta 60
atcagtttct cagaccctgt ccattcctct ggcctccaca cacaccccac tctcccttga 120
acaaatacct tatccagatc aaagacatgc cttccttcaa aaagtacaac ctcgacaagc 180
agagtgttga ggtccctggc actcggaagc ctggcgcttc aggccactac agacatgccg 240
cctacggcga tgctcttgtc accaacatcc gtgaggcccc tcatatcgaa actctttacg 300
acatgtggca gaactctgtg acaaagtatg gcggcaatga ctttttgggt caccgtccct 360
tcaacactgt tgcccagacc tatggtggct acagttggga gacgtaccgc cagattaacc 420
agcgcgttaa tgcgttcggc agcggtatca tgcacctgaa cgaggtgatc ctcggcaacc 480
gccagcttaa ccgctgggcg ttgggcatct ggtcccacgg tcgccctgag tggttcatta 540
cggagatgag ctgcaactgc tacaacctca tttctgttgc attgtacgac acccttggac 600
ctgatgcagt cgagtacatt gtcaaccacg ccgagattga gattgttgtc tcaagtgcca 660
accatatcgc ctctttgctc gagaacgccg agaagctccc caagctcaag gccattgtca 720
gcatggatgc tcttcacgat accgtccccg tccccggcgc cacctctgcc gcacaggttc 780
ttcgtgcctg gggtgcacaa aagggcatca aggtctatga ctttaacgag attgagtccc 840
tcggtgccga gttccctcgc aagcacctgc ctcccaccgc tgatgaggtc gcctccatct 900
gctacacttc cggcaccacc ggtcagccta aaggagccat gctcacccac agaaactttg 960
ttgctactgt tggtaccaac cgcgagggca tgcttctcac cgaggacgac gttttgatca 1020
gtttcttgcc cttggctcac attatgggac gcgtcattga cacttgctcg atgtacagcg 1080
gtggcaagat tggttacttc cgtggagata ttcttttgct tctcgaggac gttgctgagc 1140
tccgtcccac attcttccca gctgtgcctc gcctcttgaa ccgcatttat gccaagctcg 1200
ttgcctctac cattgaggcc cccggtttgg tcggtgcctt ggcccgtcgc ggtgtcgccg 1260
ccaagatggc caaccttgct gccggaaagg gtgtcaacca cgctctctgg gacagactgc 1320
tgttcaacaa ggtcaagatg gccctgggtg gtcgcgttca ggtcatcctg actggatctg 1380
cgcccattgc caaggaggtt ctcagcttct tgagaattgc tttcggatgc gtggttttgg 1440
agggatacgg ctccactgag ggcatggcta ccgccaccat cacaatggct gatgagtaca 1500
ttcctggtca cattggctgc cctcgtgctg gatgcgagct caagctggtg gatgtgcccg 1560
cgatgaacta cctctctacc gaccagccct acccccgtgg agagatctgg atccgtggtg 1620
acactgtttt caaaggatac ttcaaggacg agaagaacac tagtgagact atcgactctg 1680
aaggctggct cgctaccggt gatattggat ttgtggataa gcgtggatgc tttacgatca 1740
ttgaccgcaa gaagaacatc ttcaagttgg cacaaggtga atacattgct cctgaaaaga 1800
ttgagaacgt cttgggcgca cgctgcaatc ttgtccagca gatctatgtt catggtgatt 1860
cgcttgagtc caccttggtc gcagttctta ttcccgagcc cgagaccttc ctgcccttcg 1920
cgaatgccat tgctggtgcc tccgtcactg ctggagatgt tgagggtttg aacaagctgt 1980
gccaagatcc caaggtcaag atcgcggttc tgaaggagtt ggagaaggcc ggaaaggccg 2040
gtgcgatgcg cggattcgag ttcgtgaagc gtgtccactt gaccacggat gcattctcgg 2100
tcgacaacgg catgatgaca cctaccttca aggtccgtcg cccacaagta gccgagcatt 2160
tcagggagca aatcacggcc atgtataagg agatcaatgc ctcgacccct gttgccaagc 2220
tgtagataga aaactctttg ccccttatta ccctttgaat agaaggtgac acgttgtttg 2280
attcacac 2288
<210> 40
<211> 2816
<212> DNA
<213> Mortierella alpina
<400> 40
atgccttcct tcaaaaagta caacctcgac aagcagagtg ttgaggtccc tggcactcgg 60
aagcctggcg cttcaggcaa gttggatagt ggctcatgag atccaactgt tgggccacgc 120
taccatgaaa ctagtcgcta atgcagattc tctattgcct ttcaccttct cacaggccac 180
tacagacatg ccgcctacgg cgatgctctt gtcaccaaca tccgtgaggc ccctcatatc 240
gaaactcttt acgacatgtg gcagaactgt aagttgattc ccgaggacct gggaaatctt 300
tactcggatc tgtctcacaa gaagactcac actctgctct ccacaattac cttgtaacct 360
tcagctgtga caaagtatgg cggcaatgac tttttgggtc accgtccctt caacactgtt 420
gcccagacct atggtggcta cagttgggag acgtaccgcc agattaacca gcgcgttaat 480
gcgttcggca gcggtatcat gcacctgaac gaggtgatcc tcggcaaccg ccagcttaac 540
cgctgggcgt tgggcatctg gtcccacggt cgccctgagt ggttcattac ggagatgagc 600
tgcaactgct acaacctcat ttctgttgca ttgtacgaca cccttggacc tgatgcagtc 660
gagtacattg tcaaccacgc cgagattgag attgttgtct caagtggtaa gtcgcttttt 720
tttttttgct attggcgcct gcttgcttgc ctgcacgtga aaactataat ggtttctgat 780
ctcccttttg tgtacctcct cctttcgatc aacttctttg taattttatt cccgggcatt 840
gactctatat gcagccaacc atatcgcctc tttgctcgag aacgccgaga agctccccaa 900
gctcaaggcc attgtcagca tggatgctct tcacgatacc gtccccgtcc ccggcgccac 960
ctctgccgca caggttcttc gtgcctgggg tgcacaaaag ggcatcaagg tctatgactt 1020
taacgagatt gagtccctcg gtgccgagtt ccctcgcaag cacctgcctc ccaccgctga 1080
tgaggtcgcc tccatctgct acacttccgg caccaccggt cagcctgtaa gtgtgttttc 1140
ccttcactga cgatgtcggc tgaggatgca ttttgctgat tgaaacttcc catctaacat 1200
cgcttgatct atagaaagga gccatgctca cccacagaaa ctttgttgct actgttggta 1260
ccaaccgcga gggcatgctt ctcaccgagg acgacgtttt gatcaggtat aactcatctt 1320
gaagctgatc aatgacacgc gatgtacaac gcgacgatgg agcgagatct acaatgcgga 1380
atggctcacc tccggtttac aattaccaca cttctagttt cttgcccttg gctcacatta 1440
tgggacgcgt cattgacact tgctcgatgt acagcggtgg caagattggt tacttccgtg 1500
gagatattct tttgcttctc gaggacgttg ctgagctccg tcccacattc ttcccagctg 1560
tgcctcgcct cttgaaccgc atttatgcca agctcgttgc ctctaccatt gaggcccccg 1620
gtttggtcgg tgccttggcc cgtcgcggtg tcgccgccaa gatggccaac cttgctgccg 1680
gaaagggtgt caaccacgct ctctgggaca gactgctgtt caacaaggtc aagatggccc 1740
tgggtggtcg cgttcaggtc atcctgactg gatctgcgcc cattgccaag gaggttctca 1800
gcttcttgag aattgctttc ggatgcgtgg ttttggaggg atacggctcc actgagggca 1860
tggctaccgc caccatcaca atggctgagt acgtgaacct agttatttta ttgaaatgtc 1920
gtggagcctg tcgactgtag catttcaatc taaccattag taatcttttc aaaaatagtg 1980
agtacattcc tggtcacatt ggctgccctc gtgctggatg cgagctcaag ctggtggatg 2040
tgcccgcgat gaactacctc tctaccgacc agccctaccc ccgtggagag atctggatcc 2100
gtggtgacac tgttttcaaa ggatacttca aggacgagaa gaacactagt gagactatcg 2160
actctgaagg ctggctcgct accggtgata ttggatttgt ggataagcgt ggatgcttta 2220
cgatcattga ccgcaagaag aacatcttca aggtatgagc aaaaagtggg attgatctga 2280
tcgtttctct tctcgttttc ccgttaagga attccgctca tactaacgtt ctcgtcaatg 2340
gtttgcatgt attatagttg gcacaaggtg aatacattgc tcctgaaaag attgagaacg 2400
tcttgggcgc acgctgcaat cttgtccagc agatctatgt tcatggtgat tcgcttgagt 2460
ccaccttggt cgcagttctt attcccgagc ccgagacctt cctgcccttc gcgaatgcca 2520
ttgctggtgc ctccgtcact gctggagatg ttgagggttt gaacaagctg tgccaagatc 2580
ccaaggtcaa gatcgcggtt ctgaaggagt tggagaaggc cggaaaggcc ggtgcgatgc 2640
gcggattcga gttcgtgaag cgtgtccact tgaccacgga tgcattctcg gtcgacaacg 2700
gcatgatgac acctaccttc aaggtccgtc gcccacaagt agccgagcat ttcagggagc 2760
aaatcacggc catgtataag gagatcaatg cctcgacccc tgttgccaag ctgtag 2816
<210> 41
<211> 1848
<212> DNA
<213> Mortierella alpina
<400> 41
atggttgctc tcccactcgt cgcagcagct gtcccagctg ccatgtatgt gagctcaaag 60
ctggcacttc ctcgggatat gaagttgatt aagagcttga tcggagccaa gatggcctac 120
agtgccatgg aaaagaacga cgccctcaac ctgacactcc gcttcgacga gtgctaccgc 180
aagtatcctg accgtgaagc cctggtcttt gagggcaaat cctattcatt ccgtgatatt 240
cagcttgcct ccaacaggtg cggcaactgg ttgctggcca aagggatcaa gcgaggagat 300
atcgtctcgc ttttcatgtt gaacaggcca gagttcatct tctgctggct gggtctcaac 360
aagattggag ccactggtgc cttcatcaat accaacctta cgggcaaacc cctgacacat 420
tccctccgga cagccacgtc gtcaatgttg atcatggaca cggagttgac agacgcgatc 480
gccaactccc tggatgagat tcaggagatg ggctattcaa tttactctta cggacccgaa 540
gccgtggact ttgctacccc gatggatatc tcgcaggtcc cagacaccga tacacccgaa 600
cacctgcgcc ggaacacgac cgcggatgac attgcgatgc tcatctacac ctctggaact 660
actggtcttc ccaaggccgg tcgtgtctct catgcgcgtg cctctatggg acctcagttt 720
tggaaccgat tctatcactt cagtgagagc gacagggtct atctgtcctt gcccttgtac 780
cacagtgctg gcgccatctt gggagtgatt gcttgttgga cctcgggagc aaccttgatc 840
ctggcccgca agttctccgc gacacatttc tgggaggatt gccgcgtgaa caacgcaact 900
gtgattcaat acattggaga aatttgcaga tatctgctca acacgccaga atcacccctg 960
gacaaggcac actcgatacg actggcacat ggtaatggaa tgcgacccga tgtctggact 1020
cgcttcagag atcggttcgg catcccgttg attggcgagt ggtatgcatc gactgaggga 1080
actggagcct tgtcgaatta taacacaggc ccaggcggcg ctggagcgat tggataccgc 1140
ggtacccttg ccagagcatt ggataaagga ctcaggattg cgagatttga tgtccagaca 1200
gaggagttgg ttcgggacaa aaacggttat tgcattgagt gcaaacctgg cgagcccgga 1260
gaattgctga cgcttgttga tgctaaagag ccgaacaaag acttcaaagg ataccatcaa 1320
aaccaggcag cgaccaacaa aaagattgtc aaagatgttt tcaaagccgg cgacatgtac 1380
ttccgtaccg gagatatcct tcggcgcgat agcgatgggt acttttactt tggcgaccgt 1440
gtgggcgata cattccggtg gaagtccgag aatgtgtcta cggccgaggt gtctgaagtc 1500
ctctcgcagt atccggactg tatcgaagtc aatgtgtatg gagttcagat cccagggcag 1560
gacggacgcg ccggtatggc agcgattgtg tccaagagca cgatggattg ggagaaattt 1620
gcggcgtatg cactcaagaa cctgccgcgg tattctgttc cgatctttat ccgcaagatg 1680
cccgagatgg agatcacagg gacgttcaag cagcgcaaag tcgagttggt gaatgaggga 1740
atcgacccca agacgattgc caacgagatg ctgtggttgg acggacacca ctataagccg 1800
ttcaaggcgg ccgagcacca gcgcgtcatc agcggcaagg ccaagcta 1848
<210> 42
<211> 616
<212> PRT
<213> Mortierella alpina
<400> 42
Met Val Ala Leu Pro Leu Val Ala Ala Ala Val Pro Ala Ala Met Tyr
1 5 10 15
Val Ser Ser Lys Leu Ala Leu Pro Arg Asp Met Lys Leu Ile Lys Ser
20 25 30
Leu Ile Gly Ala Lys Met Ala Tyr Ser Ala Met Glu Lys Asn Asp Ala
35 40 45
Leu Asn Leu Thr Leu Arg Phe Asp Glu Cys Tyr Arg Lys Tyr Pro Asp
50 55 60
Arg Glu Ala Leu Val Phe Glu Gly Lys Ser Tyr Ser Phe Arg Asp Ile
65 70 75 80
Gln Leu Ala Ser Asn Arg Cys Gly Asn Trp Leu Leu Ala Lys Gly Ile
85 90 95
Lys Arg Gly Asp Ile Val Ser Leu Phe Met Leu Asn Arg Pro Glu Phe
100 105 110
Ile Phe Cys Trp Leu Gly Leu Asn Lys Ile Gly Ala Thr Gly Ala Phe
115 120 125
Ile Asn Thr Asn Leu Thr Gly Lys Pro Leu Thr His Ser Leu Arg Thr
130 135 140
Ala Thr Ser Ser Met Leu Ile Met Asp Thr Glu Leu Thr Asp Ala Ile
145 150 155 160
Ala Asn Ser Leu Asp Glu Ile Gln Glu Met Gly Tyr Ser Ile Tyr Ser
165 170 175
Tyr Gly Pro Glu Ala Val Asp Phe Ala Thr Pro Met Asp Ile Ser Gln
180 185 190
Val Pro Asp Thr Asp Thr Pro Glu His Leu Arg Arg Asn Thr Thr Ala
195 200 205
Asp Asp Ile Ala Met Leu Ile Tyr Thr Ser Gly Thr Thr Gly Leu Pro
210 215 220
Lys Ala Gly Arg Val Ser His Ala Arg Ala Ser Met Gly Pro Gln Phe
225 230 235 240
Trp Asn Arg Phe Tyr His Phe Ser Glu Ser Asp Arg Val Tyr Leu Ser
245 250 255
Leu Pro Leu Tyr His Ser Ala Gly Ala Ile Leu Gly Val Ile Ala Cys
260 265 270
Trp Thr Ser Gly Ala Thr Leu Ile Leu Ala Arg Lys Phe Ser Ala Thr
275 280 285
His Phe Trp Glu Asp Cys Arg Val Asn Asn Ala Thr Val Ile Gln Tyr
290 295 300
Ile Gly Glu Ile Cys Arg Tyr Leu Leu Asn Thr Pro Glu Ser Pro Leu
305 310 315 320
Asp Lys Ala His Ser Ile Arg Leu Ala His Gly Asn Gly Met Arg Pro
325 330 335
Asp Val Trp Thr Arg Phe Arg Asp Arg Phe Gly Ile Pro Leu Ile Gly
340 345 350
Glu Trp Tyr Ala Ser Thr Glu Gly Thr Gly Ala Leu Ser Asn Tyr Asn
355 360 365
Thr Gly Pro Gly Gly Ala Gly Ala Ile Gly Tyr Arg Gly Thr Leu Ala
370 375 380
Arg Ala Leu Asp Lys Gly Leu Arg Ile Ala Arg Phe Asp Val Gln Thr
385 390 395 400
Glu Glu Leu Val Arg Asp Lys Asn Gly Tyr Cys Ile Glu Cys Lys Pro
405 410 415
Gly Glu Pro Gly Glu Leu Leu Thr Leu Val Asp Ala Lys Glu Pro Asn
420 425 430
Lys Asp Phe Lys Gly Tyr His Gln Asn Gln Ala Ala Thr Asn Lys Lys
435 440 445
Ile Val Lys Asp Val Phe Lys Ala Gly Asp Met Tyr Phe Arg Thr Gly
450 455 460
Asp Ile Leu Arg Arg Asp Ser Asp Gly Tyr Phe Tyr Phe Gly Asp Arg
465 470 475 480
Val Gly Asp Thr Phe Arg Trp Lys Ser Glu Asn Val Ser Thr Ala Glu
485 490 495
Val Ser Glu Val Leu Ser Gln Tyr Pro Asp Cys Ile Glu Val Asn Val
500 505 510
Tyr Gly Val Gln Ile Pro Gly Gln Asp Gly Arg Ala Gly Met Ala Ala
515 520 525
Ile Val Ser Lys Ser Thr Met Asp Trp Glu Lys Phe Ala Ala Tyr Ala
530 535 540
Leu Lys Asn Leu Pro Arg Tyr Ser Val Pro Ile Phe Ile Arg Lys Met
545 550 555 560
Pro Glu Met Glu Ile Thr Gly Thr Phe Lys Gln Arg Lys Val Glu Leu
565 570 575
Val Asn Glu Gly Ile Asp Pro Lys Thr Ile Ala Asn Glu Met Leu Trp
580 585 590
Leu Asp Gly His His Tyr Lys Pro Phe Lys Ala Ala Glu His Gln Arg
595 600 605
Val Ile Ser Gly Lys Ala Lys Leu
610 615
<210> 43
<211> 1851
<212> DNA
<213> Mortierella alpina
<400> 43
atggttgctc tcccactcgt cgcagcagct gtcccagctg ccatgtatgt gagctcaaag 60
ctggcacttc ctcgggatat gaagttgatt aagagcttga tcggagccaa gatggcctac 120
agtgccatgg aaaagaacga cgccctcaac ctgacactcc gcttcgacga gtgctaccgc 180
aagtatcctg accgtgaagc cctggtcttt gagggcaaat cctattcatt ccgtgatatt 240
cagcttgcct ccaacaggtg cggcaactgg ttgctggcca aagggatcaa gcgaggagat 300
atcgtctcgc ttttcatgtt gaacaggcca gagttcatct tctgctggct gggtctcaac 360
aagattggag ccactggtgc cttcatcaat accaacctta cgggcaaacc cctgacacat 420
tccctccgga cagccacgtc gtcaatgttg atcatggaca cggagttgac agacgcgatc 480
gccaactccc tggatgagat tcaggagatg ggctattcaa tttactctta cggacccgaa 540
gccgtggact ttgctacccc gatggatatc tcgcaggtcc cagacaccga tacacccgaa 600
cacctgcgcc ggaacacgac cgcggatgac attgcgatgc tcatctacac ctctggaact 660
actggtcttc ccaaggccgg tcgtgtctct catgcgcgtg cctctatggg acctcagttt 720
tggaaccgat tctatcactt cagtgagagc gacagggtct atctgtcctt gcccttgtac 780
cacagtgctg gcgccatctt gggagtgatt gcttgttgga cctcgggagc aaccttgatc 840
ctggcccgca agttctccgc gacacatttc tgggaggatt gccgcgtgaa caacgcaact 900
gtgattcaat acattggaga aatttgcaga tatctgctca acacgccaga atcacccctg 960
gacaaggcac actcgatacg actggcacat ggtaatggaa tgcgacccga tgtctggact 1020
cgcttcagag atcggttcgg catcccgttg attggcgagt ggtatgcatc gactgaggga 1080
actggagcct tgtcgaatta taacacaggc ccaggcggcg ctggagcgat tggataccgc 1140
ggtacccttg ccagagcatt ggataaagga ctcaggattg cgagatttga tgtccagaca 1200
gaggagttgg ttcgggacaa aaacggttat tgcattgagt gcaaacctgg cgagcccgga 1260
gaattgctga cgcttgttga tgctaaagag ccgaacaaag acttcaaagg ataccatcaa 1320
aaccaggcag cgaccaacaa aaagattgtc aaagatgttt tcaaagccgg cgacatgtac 1380
ttccgtaccg gagatatcct tcggcgcgat agcgatgggt acttttactt tggcgaccgt 1440
gtgggcgata cattccggtg gaagtccgag aatgtgtcta cggccgaggt gtctgaagtc 1500
ctctcgcagt atccggactg tatcgaagtc aatgtgtatg gagttcagat cccagggcag 1560
gacggacgcg ccggtatggc agcgattgtg tccaagagca cgatggattg ggagaaattt 1620
gcggcgtatg cactcaagaa cctgccgcgg tattctgttc cgatctttat ccgcaagatg 1680
cccgagatgg agatcacagg gacgttcaag cagcgcaaag tcgagttggt gaatgaggga 1740
atcgacccca agacgattgc caacgagatg ctgtggttgg acggacacca ctataagccg 1800
ttcaaggcgg ccgagcacca gcgcgtcatc agcggcaagg ccaagctata g 1851
<210> 44
<211> 2017
<212> DNA
<213> Mortierella alpina
<400> 44
tcgctatcta tcacccctca ctccccactc cgcactctgc tcttcctttt tcctttctct 60
ctctcaccgt cgccactgtc tctactttct ttaccaccca cgcatcagtc acagcatggt 120
tgctctccca ctcgtcgcag cagctgtccc agctgccatg tatgtgagct caaagctggc 180
acttcctcgg gatatgaagt tgattaagag cttgatcgga gccaagatgg cctacagtgc 240
catggaaaag aacgacgccc tcaacctgac actccgcttc gacgagtgct accgcaagta 300
tcctgaccgt gaagccctgg tctttgaggg caaatcctat tcattccgtg atattcagct 360
tgcctccaac aggtgcggca actggttgct ggccaaaggg atcaagcgag gagatatcgt 420
ctcgcttttc atgttgaaca ggccagagtt catcttctgc tggctgggtc tcaacaagat 480
tggagccact ggtgccttca tcaataccaa ccttacgggc aaacccctga cacattccct 540
ccggacagcc acgtcgtcaa tgttgatcat ggacacggag ttgacagacg cgatcgccaa 600
ctccctggat gagattcagg agatgggcta ttcaatttac tcttacggac ccgaagccgt 660
ggactttgct accccgatgg atatctcgca ggtcccagac accgatacac ccgaacacct 720
gcgccggaac acgaccgcgg atgacattgc gatgctcatc tacacctctg gaactactgg 780
tcttcccaag gccggtcgtg tctctcatgc gcgtgcctct atgggacctc agttttggaa 840
ccgattctat cacttcagtg agagcgacag ggtctatctg tccttgccct tgtaccacag 900
tgctggcgcc atcttgggag tgattgcttg ttggacctcg ggagcaacct tgatcctggc 960
ccgcaagttc tccgcgacac atttctggga ggattgccgc gtgaacaacg caactgtgat 1020
tcaatacatt ggagaaattt gcagatatct gctcaacacg ccagaatcac ccctggacaa 1080
ggcacactcg atacgactgg cacatggtaa tggaatgcga cccgatgtct ggactcgctt 1140
cagagatcgg ttcggcatcc cgttgattgg cgagtggtat gcatcgactg agggaactgg 1200
agccttgtcg aattataaca caggcccagg cggcgctgga gcgattggat accgcggtac 1260
ccttgccaga gcattggata aaggactcag gattgcgaga tttgatgtcc agacagagga 1320
gttggttcgg gacaaaaacg gttattgcat tgagtgcaaa cctggcgagc ccggagaatt 1380
gctgacgctt gttgatgcta aagagccgaa caaagacttc aaaggatacc atcaaaacca 1440
ggcagcgacc aacaaaaaga ttgtcaaaga tgttttcaaa gccggcgaca tgtacttccg 1500
taccggagat atccttcggc gcgatagcga tgggtacttt tactttggcg accgtgtggg 1560
cgatacattc cggtggaagt ccgagaatgt gtctacggcc gaggtgtctg aagtcctctc 1620
gcagtatccg gactgtatcg aagtcaatgt gtatggagtt cagatcccag ggcaggacgg 1680
acgcgccggt atggcagcga ttgtgtccaa gagcacgatg gattgggaga aatttgcggc 1740
gtatgcactc aagaacctgc cgcggtattc tgttccgatc tttatccgca agatgcccga 1800
gatggagatc acagggacgt tcaagcagcg caaagtcgag ttggtgaatg agggaatcga 1860
ccccaagacg attgccaacg agatgctgtg gttggacgga caccactata agccgttcaa 1920
ggcggccgag caccagcgcg tcatcagcgg caaggccaag ctatagtagg gcgcgtgcgc 1980
caatgcagta gcaatactat tccccgcttt gtccatt 2017
<210> 45
<211> 2345
<212> DNA
<213> Mortierella alpina
<400> 45
atggttggtg agtaaacagc gatcgccctg ggtccaatcg actcatctgc taatctgatc 60
tcacacgtcc cttatcaatt cacaaaagaa aaaaaagaga caagagagag aattactaac 120
attgctctct ccctcgtgtc gatgcagctc tcccactcgt cgcagcagct gtcccagctg 180
ccatgtatgt gagctcaaag ctggcacttc ctcgggatat gaagttgatt aagagcttga 240
tcggagccaa gatggcctac agtgccatgg aaaagaacga cgccctcaac ctgacactcc 300
gcttcgacga gtgctaccgc aagtatcctg accgtgaagc cctggtcttt gagggcaaat 360
cctattcatt ccgtgatatt cagcttggta agccattgtt acacggcact caccccacgc 420
ttcctgcttt cagagctcac gactgctcga accttcaatt ttttgtatcg atcgatcacc 480
gatcgatcat gcgcccacat tgcctagagc tatggcacac gcgctaatgc atgccttctt 540
gttatgaagc ctccaacagg tgcggcaact ggttgctggc caaagggatc aagcgaggag 600
atatcgtctc gcttttcatg ttgaacaggc cagagttcat cttctgctgg ctgggtctca 660
acaagattgg agccactggt gccttcatca ataccaacct tacgggcaaa cccctgacac 720
attccctccg gacagccacg tcgtcaatgt tgatcatgga cacggagttg acagacgcga 780
tcgccaactc cctggatgag attcaggaga tgggctattc aatttactct tacggacccg 840
aagccgtgga ctttgctacc ccgatggata tctcgcaggt cccagacacc gatacacccg 900
aacacctgcg ccggaacacg accgcggatg acattgcgat gctcatctac acctctggaa 960
ctactggtct tcccaaggcc ggtcgtgtct ctcatgcgcg tgcctctagt aagttgagag 1020
tcttcagcct ttgacatacg tattttttga gcgtgctact aacagttctc gttgccgtta 1080
tctgcatatt tttagtggga cctcagtttt ggaaccgatt ctatcacttc agtgagagcg 1140
acagggtcta tctgtccttg cccttgtacc acagtgctgg cgccatcttg ggagtgattg 1200
cttgttggac ctcgggagca accttgatcc tggcccgcaa gttctccgcg acacatttct 1260
gggaggattg ccgcgtgaac aacgcaactg tgattcaata cattggagaa atttgcagat 1320
atctgctcaa cacgccagaa tcacccctgg acaaggcaca ctcgatacga ctggcacatg 1380
gtaatggaat gcgacccgat gtctggactc gcttcagaga tcggttcggc atcccgttga 1440
ttggcgagtg gtatgcatcg actgagggaa ctggagcctt gtcgaattat aacacaggcc 1500
caggcggcgc tggagcgatt ggataccgcg gtacccttgc cagagcattg gataaaggac 1560
tcaggattgc gagatttgat gtccagacag aggagttggt tcgggacaaa aacggttatt 1620
gcattgaggt aaaacataag gcgcattgtt gaagtctaaa tcacttcaga tgctttgttc 1680
ggcatgctta ccaaacgcac cgaccatctt ttcactggtg cggcatataa tagtgcaaac 1740
ctggcgagcc cggagaattg ctgacgcttg ttgatgctaa agagccgaac aaagacttca 1800
aaggatacca tcaaaaccag gcagcgacca acaaaaagat tgtcaaagat gttttcaaag 1860
ccggcgacat gtacttccgt accggagata tccttcggcg cgatagcgat gggtactttt 1920
actttggcga ccgtgtgggc gatacattcc ggtggaagtc cgagaatgtg tctacggccg 1980
aggtgtctga agtcctctcg cagtatccgg actgtatcga agtcaatgtg tatggagttc 2040
agatcccagg gcaggacgga cgcgccggta tggcagcgat tgtgtccaag agcacgatgg 2100
attgggagaa atttgcggcg tatgcactca agaacctgcc gcggtattct gttccgatct 2160
ttatccgcaa gatgcccgag atggagatca cagggacgtt caagcagcgc aaagtcgagt 2220
tggtgaatga gggaatcgac cccaagacga ttgccaacga gatgctgtgg ttggacggac 2280
accactataa gccgttcaag gcggccgagc accagcgcgt catcagcggc aaggccaagc 2340
tatag 2345
<210> 46
<211> 2073
<212> DNA
<213> Mortierella alpina
<400> 46
atggaaacct tggttaacgg aaagtatgcg gtcgagtacg acgaggtcga tcacatctat 60
cgcaacgtca tggctacagg cgggctcctc gacaggccta tgcctccata ctacgacatc 120
aaggagcgca ccatggccca cctctttgag tatatggcca acacctacga agacaaagac 180
gccatgggct ggcgagacat tatcaaggtc cacaaggtcg agaagcaggc tgccaatcct 240
ggcgagaagc caaagacctg gatcacttat gagctctcgg actacaactg gatgtcgtac 300
cgccaagcca agaactatgc agatcgagtt ggcttgggca tcacacgcct tggagttgag 360
aagggagact ttgtcatgat ctttgctagc acatgtcccg aatggttcct gacagcgcat 420
ggatgcttct cgcagtcagt gactatcgtg acagcctacg actcgatgga cgagaagtcg 480
atccagttta ttgttgacca gtcccagccc aaggccatct ttgctgatgc gcacacgctc 540
cctgtggtgt ccaaactcat gcagaagggc aacagtggtg tcaaggcagt catttacaca 600
ggccaagagt gggaagtgac cgatgcaatc aagaagatgg agcaagtaga aaaccgctca 660
tttgagctgg ttcatatcga cgaactcaag aagaccaagt cagcatctaa cggcgaacag 720
tctgccggaa aggggaagca gagatcatct gaggatgccg aaggcgctca ggacgagatc 780
gaggtcatat accctaaggc ggatgatctg gcctgtatta tgtatacctc tgggtcgacg 840
ggtcagccca agggcgcgca attgacacat ggcaacttga tggcggccat tggaagtgct 900
gcggccatgg agggcgacca gctggacaag gaaacagaca ttgttatttc atatctgcca 960
ttggcccatg tcctcgagtt tgtcatttcc cactttgtgg tatccatggg ctgccgtctt 1020
ggattcggac gagcacgcac tctgatggat gatgcagtcg ctcccaccgc aggaagtggc 1080
aggtccaagg gccttggtga tctgaaggcg ctccagccaa cattgatggc tggtgtgcca 1140
acgatctggg agcgtatccg caagggcatc ctggccgagg tcaacaagca atccttccct 1200
atccgtacac tcttctttgc tgcactcaac accaagtggg ctatcgtcca ggctaccgga 1260
tctgagaact ttgtcaccaa gactattgac tcgttggtct ttagtaaggc taaggagctc 1320
gttggaggca agctgcgcct taccttgact ggaggggccg gaatcagtga tgagacgcac 1380
cggttcttga gcatggtaat gtgctacgtt atctcgggat atggtctcac tgaagtctgt 1440
ggtgttgccg ctgtcaccct gccacgtatg ggtcaccgtc tcaggaccgt tggaccaccc 1500
gcgcccagtc ttgagctgaa gttggtgaat gtgcccgaca ccgagtacac aggagacaat 1560
ggatcgggcg aaatctggtt ccgtggacct gcagtgatga agggatactt caaactcgag 1620
gaagagacca agaaggtgat gaccggggat ggttggttca agacaggcga cattggcacg 1680
atgaacccag acggcacact gtcaatcaag gacagggtca agaatctggt caagctgtct 1740
catggagaat atgtcgccct ggagaaatgt gaagccgttt atcgcgattc caaggagatc 1800
aagagcattt gcatcgttgc ggacaatggg tgccctgtgt tgctggccgt tgtggaaccg 1860
agccacgcag gggcgtctga caaggagatt ttggatatcc tgaagagcca agccaaggcg 1920
gcgggcctct ccaagtccga gactgtgcaa ggcgttatca ttgatgattc ggactggatg 1980
acgaatgggt tcatgacctc gagcagcaag gtcaagagac gcgaggtccg caaggcacac 2040
aacaaggata ttgaggagat gtggaagaag ttc 2073
<210> 47
<211> 691
<212> PRT
<213> Mortierella alpina
<400> 47
Met Glu Thr Leu Val Asn Gly Lys Tyr Ala Val Glu Tyr Asp Glu Val
1 5 10 15
Asp His Ile Tyr Arg Asn Val Met Ala Thr Gly Gly Leu Leu Asp Arg
20 25 30
Pro Met Pro Pro Tyr Tyr Asp Ile Lys Glu Arg Thr Met Ala His Leu
35 40 45
Phe Glu Tyr Met Ala Asn Thr Tyr Glu Asp Lys Asp Ala Met Gly Trp
50 55 60
Arg Asp Ile Ile Lys Val His Lys Val Glu Lys Gln Ala Ala Asn Pro
65 70 75 80
Gly Glu Lys Pro Lys Thr Trp Ile Thr Tyr Glu Leu Ser Asp Tyr Asn
85 90 95
Trp Met Ser Tyr Arg Gln Ala Lys Asn Tyr Ala Asp Arg Val Gly Leu
100 105 110
Gly Ile Thr Arg Leu Gly Val Glu Lys Gly Asp Phe Val Met Ile Phe
115 120 125
Ala Ser Thr Cys Pro Glu Trp Phe Leu Thr Ala His Gly Cys Phe Ser
130 135 140
Gln Ser Val Thr Ile Val Thr Ala Tyr Asp Ser Met Asp Glu Lys Ser
145 150 155 160
Ile Gln Phe Ile Val Asp Gln Ser Gln Pro Lys Ala Ile Phe Ala Asp
165 170 175
Ala His Thr Leu Pro Val Val Ser Lys Leu Met Gln Lys Gly Asn Ser
180 185 190
Gly Val Lys Ala Val Ile Tyr Thr Gly Gln Glu Trp Glu Val Thr Asp
195 200 205
Ala Ile Lys Lys Met Glu Gln Val Glu Asn Arg Ser Phe Glu Leu Val
210 215 220
His Ile Asp Glu Leu Lys Lys Thr Lys Ser Ala Ser Asn Gly Glu Gln
225 230 235 240
Ser Ala Gly Lys Gly Lys Gln Arg Ser Ser Glu Asp Ala Glu Gly Ala
245 250 255
Gln Asp Glu Ile Glu Val Ile Tyr Pro Lys Ala Asp Asp Leu Ala Cys
260 265 270
Ile Met Tyr Thr Ser Gly Ser Thr Gly Gln Pro Lys Gly Ala Gln Leu
275 280 285
Thr His Gly Asn Leu Met Ala Ala Ile Gly Ser Ala Ala Ala Met Glu
290 295 300
Gly Asp Gln Leu Asp Lys Glu Thr Asp Ile Val Ile Ser Tyr Leu Pro
305 310 315 320
Leu Ala His Val Leu Glu Phe Val Ile Ser His Phe Val Val Ser Met
325 330 335
Gly Cys Arg Leu Gly Phe Gly Arg Ala Arg Thr Leu Met Asp Asp Ala
340 345 350
Val Ala Pro Thr Ala Gly Ser Gly Arg Ser Lys Gly Leu Gly Asp Leu
355 360 365
Lys Ala Leu Gln Pro Thr Leu Met Ala Gly Val Pro Thr Ile Trp Glu
370 375 380
Arg Ile Arg Lys Gly Ile Leu Ala Glu Val Asn Lys Gln Ser Phe Pro
385 390 395 400
Ile Arg Thr Leu Phe Phe Ala Ala Leu Asn Thr Lys Trp Ala Ile Val
405 410 415
Gln Ala Thr Gly Ser Glu Asn Phe Val Thr Lys Thr Ile Asp Ser Leu
420 425 430
Val Phe Ser Lys Ala Lys Glu Leu Val Gly Gly Lys Leu Arg Leu Thr
435 440 445
Leu Thr Gly Gly Ala Gly Ile Ser Asp Glu Thr His Arg Phe Leu Ser
450 455 460
Met Val Met Cys Tyr Val Ile Ser Gly Tyr Gly Leu Thr Glu Val Cys
465 470 475 480
Gly Val Ala Ala Val Thr Leu Pro Arg Met Gly His Arg Leu Arg Thr
485 490 495
Val Gly Pro Pro Ala Pro Ser Leu Glu Leu Lys Leu Val Asn Val Pro
500 505 510
Asp Thr Glu Tyr Thr Gly Asp Asn Gly Ser Gly Glu Ile Trp Phe Arg
515 520 525
Gly Pro Ala Val Met Lys Gly Tyr Phe Lys Leu Glu Glu Glu Thr Lys
530 535 540
Lys Val Met Thr Gly Asp Gly Trp Phe Lys Thr Gly Asp Ile Gly Thr
545 550 555 560
Met Asn Pro Asp Gly Thr Leu Ser Ile Lys Asp Arg Val Lys Asn Leu
565 570 575
Val Lys Leu Ser His Gly Glu Tyr Val Ala Leu Glu Lys Cys Glu Ala
580 585 590
Val Tyr Arg Asp Ser Lys Glu Ile Lys Ser Ile Cys Ile Val Ala Asp
595 600 605
Asn Gly Cys Pro Val Leu Leu Ala Val Val Glu Pro Ser His Ala Gly
610 615 620
Ala Ser Asp Lys Glu Ile Leu Asp Ile Leu Lys Ser Gln Ala Lys Ala
625 630 635 640
Ala Gly Leu Ser Lys Ser Glu Thr Val Gln Gly Val Ile Ile Asp Asp
645 650 655
Ser Asp Trp Met Thr Asn Gly Phe Met Thr Ser Ser Ser Lys Val Lys
660 665 670
Arg Arg Glu Val Arg Lys Ala His Asn Lys Asp Ile Glu Glu Met Trp
675 680 685
Lys Lys Phe
690
<210> 48
<211> 2076
<212> DNA
<213> Mortierella alpina
<400> 48
atggaaacct tggttaacgg aaagtatgcg gtcgagtacg acgaggtcga tcacatctat 60
cgcaacgtca tggctacagg cgggctcctc gacaggccta tgcctccata ctacgacatc 120
aaggagcgca ccatggccca cctctttgag tatatggcca acacctacga agacaaagac 180
gccatgggct ggcgagacat tatcaaggtc cacaaggtcg agaagcaggc tgccaatcct 240
ggcgagaagc caaagacctg gatcacttat gagctctcgg actacaactg gatgtcgtac 300
cgccaagcca agaactatgc agatcgagtt ggcttgggca tcacacgcct tggagttgag 360
aagggagact ttgtcatgat ctttgctagc acatgtcccg aatggttcct gacagcgcat 420
ggatgcttct cgcagtcagt gactatcgtg acagcctacg actcgatgga cgagaagtcg 480
atccagttta ttgttgacca gtcccagccc aaggccatct ttgctgatgc gcacacgctc 540
cctgtggtgt ccaaactcat gcagaagggc aacagtggtg tcaaggcagt catttacaca 600
ggccaagagt gggaagtgac cgatgcaatc aagaagatgg agcaagtaga aaaccgctca 660
tttgagctgg ttcatatcga cgaactcaag aagaccaagt cagcatctaa cggcgaacag 720
tctgccggaa aggggaagca gagatcatct gaggatgccg aaggcgctca ggacgagatc 780
gaggtcatat accctaaggc ggatgatctg gcctgtatta tgtatacctc tgggtcgacg 840
ggtcagccca agggcgcgca attgacacat ggcaacttga tggcggccat tggaagtgct 900
gcggccatgg agggcgacca gctggacaag gaaacagaca ttgttatttc atatctgcca 960
ttggcccatg tcctcgagtt tgtcatttcc cactttgtgg tatccatggg ctgccgtctt 1020
ggattcggac gagcacgcac tctgatggat gatgcagtcg ctcccaccgc aggaagtggc 1080
aggtccaagg gccttggtga tctgaaggcg ctccagccaa cattgatggc tggtgtgcca 1140
acgatctggg agcgtatccg caagggcatc ctggccgagg tcaacaagca atccttccct 1200
atccgtacac tcttctttgc tgcactcaac accaagtggg ctatcgtcca ggctaccgga 1260
tctgagaact ttgtcaccaa gactattgac tcgttggtct ttagtaaggc taaggagctc 1320
gttggaggca agctgcgcct taccttgact ggaggggccg gaatcagtga tgagacgcac 1380
cggttcttga gcatggtaat gtgctacgtt atctcgggat atggtctcac tgaagtctgt 1440
ggtgttgccg ctgtcaccct gccacgtatg ggtcaccgtc tcaggaccgt tggaccaccc 1500
gcgcccagtc ttgagctgaa gttggtgaat gtgcccgaca ccgagtacac aggagacaat 1560
ggatcgggcg aaatctggtt ccgtggacct gcagtgatga agggatactt caaactcgag 1620
gaagagacca agaaggtgat gaccggggat ggttggttca agacaggcga cattggcacg 1680
atgaacccag acggcacact gtcaatcaag gacagggtca agaatctggt caagctgtct 1740
catggagaat atgtcgccct ggagaaatgt gaagccgttt atcgcgattc caaggagatc 1800
aagagcattt gcatcgttgc ggacaatggg tgccctgtgt tgctggccgt tgtggaaccg 1860
agccacgcag gggcgtctga caaggagatt ttggatatcc tgaagagcca agccaaggcg 1920
gcgggcctct ccaagtccga gactgtgcaa ggcgttatca ttgatgattc ggactggatg 1980
acgaatgggt tcatgacctc gagcagcaag gtcaagagac gcgaggtccg caaggcacac 2040
aacaaggata ttgaggagat gtggaagaag ttctag 2076
<210> 49
<211> 2170
<212> DNA
<213> Mortierella alpina
<400> 49
ttcacgcact accttctttt ttcacccatc cagcagtaaa gacaacatgg aaaccttggt 60
taacggaaag tatgcggtcg agtacgacga ggtcgatcac atctatcgca acgtcatggc 120
tacaggcggg ctcctcgaca ggcctatgcc tccatactac gacatcaagg agcgcaccat 180
ggcccacctc tttgagtata tggccaacac ctacgaagac aaagacgcca tgggctggcg 240
agacattatc aaggtccaca aggtcgagaa gcaggctgcc aatcctggcg agaagccaaa 300
gacctggatc acttatgagc tctcggacta caactggatg tcgtaccgcc aagccaagaa 360
ctatgcagat cgagttggct tgggcatcac acgccttgga gttgagaagg gagactttgt 420
catgatcttt gctagcacat gtcccgaatg gttcctgaca gcgcatggat gcttctcgca 480
gtcagtgact atcgtgacag cctacgactc gatggacgag aagtcgatcc agtttattgt 540
tgaccagtcc cagcccaagg ccatctttgc tgatgcgcac acgctccctg tggtgtccaa 600
actcatgcag aagggcaaca gtggtgtcaa ggcagtcatt tacacaggcc aagagtggga 660
agtgaccgat gcaatcaaga agatggagca agtagaaaac cgctcatttg agctggttca 720
tatcgacgaa ctcaagaaga ccaagtcagc atctaacggc gaacagtctg ccggaaaggg 780
gaagcagaga tcatctgagg atgccgaagg cgctcaggac gagatcgagg tcatataccc 840
taaggcggat gatctggcct gtattatgta tacctctggg tcgacgggtc agcccaaggg 900
cgcgcaattg acacatggca acttgatggc ggccattgga agtgctgcgg ccatggaggg 960
cgaccagctg gacaaggaaa cagacattgt tatttcatat ctgccattgg cccatgtcct 1020
cgagtttgtc atttcccact ttgtggtatc catgggctgc cgtcttggat tcggacgagc 1080
acgcactctg atggatgatg cagtcgctcc caccgcagga agtggcaggt ccaagggcct 1140
tggtgatctg aaggcgctcc agccaacatt gatggctggt gtgccaacga tctgggagcg 1200
tatccgcaag ggcatcctgg ccgaggtcaa caagcaatcc ttccctatcc gtacactctt 1260
ctttgctgca ctcaacacca agtgggctat cgtccaggct accggatctg agaactttgt 1320
caccaagact attgactcgt tggtctttag taaggctaag gagctcgttg gaggcaagct 1380
gcgccttacc ttgactggag gggccggaat cagtgatgag acgcaccggt tcttgagcat 1440
ggtaatgtgc tacgttatct cgggatatgg tctcactgaa gtctgtggtg ttgccgctgt 1500
caccctgcca cgtatgggtc accgtctcag gaccgttgga ccacccgcgc ccagtcttga 1560
gctgaagttg gtgaatgtgc ccgacaccga gtacacagga gacaatggat cgggcgaaat 1620
ctggttccgt ggacctgcag tgatgaaggg atacttcaaa ctcgaggaag agaccaagaa 1680
ggtgatgacc ggggatggtt ggttcaagac aggcgacatt ggcacgatga acccagacgg 1740
cacactgtca atcaaggaca gggtcaagaa tctggtcaag ctgtctcatg gagaatatgt 1800
cgccctggag aaatgtgaag ccgtttatcg cgattccaag gagatcaaga gcatttgcat 1860
cgttgcggac aatgggtgcc ctgtgttgct ggccgttgtg gaaccgagcc acgcaggggc 1920
gtctgacaag gagattttgg atatcctgaa gagccaagcc aaggcggcgg gcctctccaa 1980
gtccgagact gtgcaaggcg ttatcattga tgattcggac tggatgacga atgggttcat 2040
gacctcgagc agcaaggtca agagacgcga ggtccgcaag gcacacaaca aggatattga 2100
ggagatgtgg aagaagttct agagaagcgt gggaagggca tgaaataaac atacgcaatg 2160
gatttattgg 2170
<210> 50
<211> 3236
<212> DNA
<213> Mortierella alpina
<400> 50
atggaaacct tggttaacgg aaagtatgcg gtcgagtacg acgaggtcga tcacatctat 60
cgcaacgtca tggctacagg cgggctcctc gacaggccta tgcctccata ctacgacatc 120
aaggagcgca ccatggccca cctctttgag tatatggcca acacctacga agacaaagac 180
gccatgggct ggcgagacat tatcaaggta ttgactgccc cggcctatca ctttttaccc 240
cacacgatcc tccctttttt ttctctccca ttcttctatc ctgaccgtat cgctatcgaa 300
cgagtcaacg agatcagttc ccacgcttac tttactccct cgtctgattc tgattatttt 360
ctctctctgc ctcttcgtga tttgttcgca ggtccacaag gtcgagaagc aggctgccaa 420
tcctggcgag aagccaaaga cctggatcac ttatgagctc tcggactaca actggatgtc 480
gtaccgccaa gccaagaact atgcagatcg agttggcttg ggcatcacac gccttggagt 540
tgagaaggga gactttgtca tgatctttgc tagcacatgg tataacctca tgcagacaac 600
tttcgcatcc atgacagcat cgcaagaaaa aaaaaagaga aggaaattat gataattcgg 660
gccaagcgac taaaacaccg ctatcgcacg cttttttttt ttttttcgct atcttgcatt 720
tcttatcgtt caaatagtcc cgaatggttc ctgacagcgc atggtaagct ttttcttttt 780
gcggatgatg atttcttctt atgacagcat gatgagattc aaccgggatt aggtgacggc 840
tgttgattgt gcaaaagggg ggccggacaa tttgaagaga cttggggagg tgtttgtgat 900
gacgacaaat ccaagattca acagaagact ggtgccaggg aagagtagag agggtgcctc 960
gttctttggc atatgaaagt ggattacgat atggctgagt taggagtcta attcatcgcg 1020
gaaaaagagt cgcgactgaa gtcccaagtc ggggactgta gaaagtattc cactcgtgtc 1080
tggtgaaatg aggaggactg ggttggggtt tggagtgccg acgagaaatc atggaatacg 1140
cttctcggtc ttcagtccac tgatcactca tggcgcaatt gactctacaa taataggatg 1200
cttctcgcag tcagtgacta tcgtgacagc ctacgactcg atggacgaga agtcgatcca 1260
gtttattgtt gaccagtccc agcccaaggc catctttgct gatgcgcaca cgctccctgt 1320
ggtgtccaaa ctcatgcaga agggcaacag tggtgtcaag gcagtcattt acacaggcca 1380
agagtgggaa gtgaccgatg caatcaagaa gatggagcaa gtagaaaacc gctcatttga 1440
gctggttcat atcgacgaac tcaagaagac caagtcagca tctaacggcg aacagtctgc 1500
cggaaagggg aagcagagat catctgagga tgccgaaggc gctcaggacg agatcgaggt 1560
catataccct aaggcggatg atctggcctg tattatgtat acctctgggt cgacgggtca 1620
gcccaagggc gcgcaattga cacatggcaa cttgatggcg gccattggaa gtgctgcggc 1680
catggagggc gaccagctgg acaaggaaac agacattgtt atttcatatc tgccattggc 1740
ccatgtcctc gagtttgtca tttcccactt tgtggtatcc atggtaagtc gaacatccct 1800
ttacatctgc atcccaaaat gcggctaaag tcaagttgtt gacctgaacg tttatattca 1860
tcttagggct gccgtcttgg attcggacga gcacgcactc tgatggatga tgcagtcgct 1920
cccaccgcag gaagtggcag gtccaagggc cttggtgatc tgaaggcgct ccagccaaca 1980
ttgatgggta tgattggcat gaagccagag actaatatga cgtagagtgg gacaaaacct 2040
tattttgacg tattgcatat tgtgtcgatt ttcaaaaacg atagctggtg tgccaacgat 2100
ctgggagcgt atccgcaagg gcatcctggc cgaggtcaac aagcaatcct tccctatccg 2160
tacactcttc tttgctgcac tcaacaccaa gtgggctatc gtccaggcta ccggatctga 2220
gaactttgtc accaagacta ttgactcgtt ggtctttagt aaggctaagg agctcgttgg 2280
aggcaagctg cgccttacct tgactggagg ggccggaatc agtgatgaga cgcaccggtt 2340
cttgagcatg gtaatgtgct acgttatctc gggatatggt ctcactgaag tctgtggtgt 2400
tgccgctgtc accctgccac gtatgggtca ccgtctcagg accgttggac cacccgtaag 2460
tccgctcgca tatcttctcg cgatctgaat atgcgagctg tttttttttg tctttcaaaa 2520
gctaacactt tgctttttcg cgacaacagg cgcccagtct tgagctgaag ttggtgaatg 2580
tgcccgacac cgagtacaca ggagacaatg gatcgggcga aatctggttc cgtggacctg 2640
cagtgatgaa gggatacttc aaactcgagg aagagaccaa gaaggtgatg accggggatg 2700
gttggttcaa gacaggcgac attggcacga tgaacccaga cggcacactg tcaatcaagg 2760
acagggtcaa gaatctggtc aagctgtctc atggagaata tgtcgccctg gagaaatgtg 2820
aagccgttta tcgcgattcc aaggagatca agagcatttg catcgttgcg gacaatgggt 2880
gccctgtgtt gctggccgtt gtggaaccga gccacgcagg ggtgagtgag acgcttttgg 2940
cctgacaagg tctcgttctt atgggaatgt ggatcattac tctatcacta acgagagagg 3000
ctgtattatt ctacttgcgt aacgtggcat aggcgtctga caaggagatt ttggatatcc 3060
tgaagagcca agccaaggcg gcgggcctct ccaagtccga gactgtgcaa ggcgttatca 3120
ttgatgattc ggactggatg acgaatgggt tcatgacctc gagcagcaag gtcaagagac 3180
gcgaggtccg caaggcacac aacaaggata ttgaggagat gtggaagaag ttctag 3236
<210> 51
<211> 2040
<212> DNA
<213> Mortierella alpina
<400> 51
atgccaaagt gctttaccgt caacgtcggc cccgaggacg tcaagggcga gactcgcatc 60
cgtcgctcca tccaggccgt cgacaaactc atggactcac cctcaagcga catcaagacc 120
ttgtacgatg tcatccagta ctctgccaag gtccgcccca acctcaacgc catcggctac 180
cgcaagattg tcaagatgat cgaagaggaa aaggagatca ccaagatggt cagcggcgag 240
cctgtcaagg agaaaaagac gtggaaatac ttcaagctct ccggctacca ctatctgacc 300
tacaaggaca ccaaggccgt catcgacagc attggaagtg gcctgcgcaa gtggggtgtt 360
gagcccaagg agaggatcac cgtctttggt tccacaagtg ccaactggct gctggtcgct 420
catggtgcct tcacgcagtc catgaccatc gtcaccgtgt atgacacttt gggcgaggaa 480
ggattgctgc actcgatgaa cgaggccgag gtgggaacgg cctacacgaa cgctgatttg 540
atcaagacaa tgaccaacgt ttcaggacgc tgccccaccc tcaagaggat cgtctatgac 600
ggcgaagcca acgcagcaga cgtgatcgcc cttcagacgg cccatcctca ccttcagctt 660
atcactctgg aggagctgaa gcagctcggt gtggatcacc ctgtggagcc cactcctccc 720
accgccgagg attgctcctg catcatgtac acttctggat cgaccggaaa ccctaaggga 780
gtcatcctca ctcacggaaa cctcattgcc gccattggcg gagttaacaa gatgctggaa 840
aagtacattc gcgaaggcga tgtcttgctt gcctaccttc ccttggctca cgttctggaa 900
ttcatggttg agaacctctg tctcttctgg ggtgtaaccc ttggatatgg tactgtccgc 960
acgctgacgg atgcctctgt gcgtgagtgc cagggtgata tcaaggaatt gcggcctacg 1020
cttatgaccg gcgttccagc agtgtgggag accatccgca aaggtgttct cgcccaagta 1080
aaccagggtt cacctctggt tcaatccgtc ttcaacgcgg ctctgaacgc caaggcctgg 1140
tgcatggacc gcaaactagg cgctttgact ggaattttcg acactgtggt gttcaacaag 1200
gtccgtcagc aaactggagg tcgtcttcgc tacgcgctct cgggcggcgc gcctatctcc 1260
caggagaccc agcgcttctt gaccacagca ctgtgcccta tccttcaagc ctatggcatg 1320
actgagtcgt gcggcatgtg ctcgatcatg actccagagg cgttcaacta caaccgcgtc 1380
ggttcccctg ttccctgcac agaggtcaag ctcgtggatg tgcccgatgc aggatacttt 1440
tcgactgatt cgccccgccc tcgtggtgag atttggattc gcggaccctc catcacctct 1500
ggatacttca agaacgctga ggagacctcg gcagccatca cagaggaccg ctggctcaag 1560
actggagata ttggagagtg gcatgctgat ggcacactct cggtcattga tcgcaagaag 1620
aacttggtca agttgtcgca tggcgagtac attgctctag agaaacttga gtcggtgtac 1680
aagagcacgg cttactgcaa caacatctgc gtttatgccg attccatgca aaacaagcct 1740
gtggcgctga ttgttgcgag tgaaccccgc atcctcgagc tggccaaggc caagggcctg 1800
gagagccgcg actttgcagt gctctgccac gataaggtga tcatcaaggc tgtcctcgac 1860
gcctgtctcg cgactgccaa aaaggctggc ctcaagcccg ccgagttgct gcagggtgtg 1920
tacctggagt ctgaggagtg gaccgctcaa ggcggtttgt tgactgctgc tcagaaattg 1980
aagcgcaagg aaatcaacca ggcttatgct gaccagatca agcagatcta tggctccaag 2040
<210> 52
<211> 680
<212> PRT
<213> Mortierella alpina
<400> 52
Met Pro Lys Cys Phe Thr Val Asn Val Gly Pro Glu Asp Val Lys Gly
1 5 10 15
Glu Thr Arg Ile Arg Arg Ser Ile Gln Ala Val Asp Lys Leu Met Asp
20 25 30
Ser Pro Ser Ser Asp Ile Lys Thr Leu Tyr Asp Val Ile Gln Tyr Ser
35 40 45
Ala Lys Val Arg Pro Asn Leu Asn Ala Ile Gly Tyr Arg Lys Ile Val
50 55 60
Lys Met Ile Glu Glu Glu Lys Glu Ile Thr Lys Met Val Ser Gly Glu
65 70 75 80
Pro Val Lys Glu Lys Lys Thr Trp Lys Tyr Phe Lys Leu Ser Gly Tyr
85 90 95
His Tyr Leu Thr Tyr Lys Asp Thr Lys Ala Val Ile Asp Ser Ile Gly
100 105 110
Ser Gly Leu Arg Lys Trp Gly Val Glu Pro Lys Glu Arg Ile Thr Val
115 120 125
Phe Gly Ser Thr Ser Ala Asn Trp Leu Leu Val Ala His Gly Ala Phe
130 135 140
Thr Gln Ser Met Thr Ile Val Thr Val Tyr Asp Thr Leu Gly Glu Glu
145 150 155 160
Gly Leu Leu His Ser Met Asn Glu Ala Glu Val Gly Thr Ala Tyr Thr
165 170 175
Asn Ala Asp Leu Ile Lys Thr Met Thr Asn Val Ser Gly Arg Cys Pro
180 185 190
Thr Leu Lys Arg Ile Val Tyr Asp Gly Glu Ala Asn Ala Ala Asp Val
195 200 205
Ile Ala Leu Gln Thr Ala His Pro His Leu Gln Leu Ile Thr Leu Glu
210 215 220
Glu Leu Lys Gln Leu Gly Val Asp His Pro Val Glu Pro Thr Pro Pro
225 230 235 240
Thr Ala Glu Asp Cys Ser Cys Ile Met Tyr Thr Ser Gly Ser Thr Gly
245 250 255
Asn Pro Lys Gly Val Ile Leu Thr His Gly Asn Leu Ile Ala Ala Ile
260 265 270
Gly Gly Val Asn Lys Met Leu Glu Lys Tyr Ile Arg Glu Gly Asp Val
275 280 285
Leu Leu Ala Tyr Leu Pro Leu Ala His Val Leu Glu Phe Met Val Glu
290 295 300
Asn Leu Cys Leu Phe Trp Gly Val Thr Leu Gly Tyr Gly Thr Val Arg
305 310 315 320
Thr Leu Thr Asp Ala Ser Val Arg Glu Cys Gln Gly Asp Ile Lys Glu
325 330 335
Leu Arg Pro Thr Leu Met Thr Gly Val Pro Ala Val Trp Glu Thr Ile
340 345 350
Arg Lys Gly Val Leu Ala Gln Val Asn Gln Gly Ser Pro Leu Val Gln
355 360 365
Ser Val Phe Asn Ala Ala Leu Asn Ala Lys Ala Trp Cys Met Asp Arg
370 375 380
Lys Leu Gly Ala Leu Thr Gly Ile Phe Asp Thr Val Val Phe Asn Lys
385 390 395 400
Val Arg Gln Gln Thr Gly Gly Arg Leu Arg Tyr Ala Leu Ser Gly Gly
405 410 415
Ala Pro Ile Ser Gln Glu Thr Gln Arg Phe Leu Thr Thr Ala Leu Cys
420 425 430
Pro Ile Leu Gln Ala Tyr Gly Met Thr Glu Ser Cys Gly Met Cys Ser
435 440 445
Ile Met Thr Pro Glu Ala Phe Asn Tyr Asn Arg Val Gly Ser Pro Val
450 455 460
Pro Cys Thr Glu Val Lys Leu Val Asp Val Pro Asp Ala Gly Tyr Phe
465 470 475 480
Ser Thr Asp Ser Pro Arg Pro Arg Gly Glu Ile Trp Ile Arg Gly Pro
485 490 495
Ser Ile Thr Ser Gly Tyr Phe Lys Asn Ala Glu Glu Thr Ser Ala Ala
500 505 510
Ile Thr Glu Asp Arg Trp Leu Lys Thr Gly Asp Ile Gly Glu Trp His
515 520 525
Ala Asp Gly Thr Leu Ser Val Ile Asp Arg Lys Lys Asn Leu Val Lys
530 535 540
Leu Ser His Gly Glu Tyr Ile Ala Leu Glu Lys Leu Glu Ser Val Tyr
545 550 555 560
Lys Ser Thr Ala Tyr Cys Asn Asn Ile Cys Val Tyr Ala Asp Ser Met
565 570 575
Gln Asn Lys Pro Val Ala Leu Ile Val Ala Ser Glu Pro Arg Ile Leu
580 585 590
Glu Leu Ala Lys Ala Lys Gly Leu Glu Ser Arg Asp Phe Ala Val Leu
595 600 605
Cys His Asp Lys Val Ile Ile Lys Ala Val Leu Asp Ala Cys Leu Ala
610 615 620
Thr Ala Lys Lys Ala Gly Leu Lys Pro Ala Glu Leu Leu Gln Gly Val
625 630 635 640
Tyr Leu Glu Ser Glu Glu Trp Thr Ala Gln Gly Gly Leu Leu Thr Ala
645 650 655
Ala Gln Lys Leu Lys Arg Lys Glu Ile Asn Gln Ala Tyr Ala Asp Gln
660 665 670
Ile Lys Gln Ile Tyr Gly Ser Lys
675 680
<210> 53
<211> 2043
<212> DNA
<213> Mortierella alpina
<400> 53
atgccaaagt gctttaccgt caacgtcggc cccgaggacg tcaagggcga gactcgcatc 60
cgtcgctcca tccaggccgt cgacaaactc atggactcac cctcaagcga catcaagacc 120
ttgtacgatg tcatccagta ctctgccaag gtccgcccca acctcaacgc catcggctac 180
cgcaagattg tcaagatgat cgaagaggaa aaggagatca ccaagatggt cagcggcgag 240
cctgtcaagg agaaaaagac gtggaaatac ttcaagctct ccggctacca ctatctgacc 300
tacaaggaca ccaaggccgt catcgacagc attggaagtg gcctgcgcaa gtggggtgtt 360
gagcccaagg agaggatcac cgtctttggt tccacaagtg ccaactggct gctggtcgct 420
catggtgcct tcacgcagtc catgaccatc gtcaccgtgt atgacacttt gggcgaggaa 480
ggattgctgc actcgatgaa cgaggccgag gtgggaacgg cctacacgaa cgctgatttg 540
atcaagacaa tgaccaacgt ttcaggacgc tgccccaccc tcaagaggat cgtctatgac 600
ggcgaagcca acgcagcaga cgtgatcgcc cttcagacgg cccatcctca ccttcagctt 660
atcactctgg aggagctgaa gcagctcggt gtggatcacc ctgtggagcc cactcctccc 720
accgccgagg attgctcctg catcatgtac acttctggat cgaccggaaa ccctaaggga 780
gtcatcctca ctcacggaaa cctcattgcc gccattggcg gagttaacaa gatgctggaa 840
aagtacattc gcgaaggcga tgtcttgctt gcctaccttc ccttggctca cgttctggaa 900
ttcatggttg agaacctctg tctcttctgg ggtgtaaccc ttggatatgg tactgtccgc 960
acgctgacgg atgcctctgt gcgtgagtgc cagggtgata tcaaggaatt gcggcctacg 1020
cttatgaccg gcgttccagc agtgtgggag accatccgca aaggtgttct cgcccaagta 1080
aaccagggtt cacctctggt tcaatccgtc ttcaacgcgg ctctgaacgc caaggcctgg 1140
tgcatggacc gcaaactagg cgctttgact ggaattttcg acactgtggt gttcaacaag 1200
gtccgtcagc aaactggagg tcgtcttcgc tacgcgctct cgggcggcgc gcctatctcc 1260
caggagaccc agcgcttctt gaccacagca ctgtgcccta tccttcaagc ctatggcatg 1320
actgagtcgt gcggcatgtg ctcgatcatg actccagagg cgttcaacta caaccgcgtc 1380
ggttcccctg ttccctgcac agaggtcaag ctcgtggatg tgcccgatgc aggatacttt 1440
tcgactgatt cgccccgccc tcgtggtgag atttggattc gcggaccctc catcacctct 1500
ggatacttca agaacgctga ggagacctcg gcagccatca cagaggaccg ctggctcaag 1560
actggagata ttggagagtg gcatgctgat ggcacactct cggtcattga tcgcaagaag 1620
aacttggtca agttgtcgca tggcgagtac attgctctag agaaacttga gtcggtgtac 1680
aagagcacgg cttactgcaa caacatctgc gtttatgccg attccatgca aaacaagcct 1740
gtggcgctga ttgttgcgag tgaaccccgc atcctcgagc tggccaaggc caagggcctg 1800
gagagccgcg actttgcagt gctctgccac gataaggtga tcatcaaggc tgtcctcgac 1860
gcctgtctcg cgactgccaa aaaggctggc ctcaagcccg ccgagttgct gcagggtgtg 1920
tacctggagt ctgaggagtg gaccgctcaa ggcggtttgt tgactgctgc tcagaaattg 1980
aagcgcaagg aaatcaacca ggcttatgct gaccagatca agcagatcta tggctccaag 2040
taa 2043
<210> 54
<211> 2052
<212> DNA
<213> Mortierella alpina
<400> 54
catgccaaag tgctttaccg tcaacgtcgg ccccgaggac gtcaagggcg agactcgcat 60
ccgtcgctcc atccaggccg tcgacaaact catggactca ccctcaagcg acatcaagac 120
cttgtacgat gtcatccagt actctgccaa ggtccgcccc aacctcaacg ccatcggcta 180
ccgcaagatt gtcaagatga tcgaagagga aaaggagatc accaagatgg tcagcggcga 240
gcctgtcaag gagaaaaaga cgtggaaata cttcaagctc tccggctacc actatctgac 300
ctacaaggac accaaggccg tcatcgacag cattggaagt ggcctgcgca agtggggtgt 360
tgagcccaag gagaggatca ccgtctttgg ttccacaagt gccaactggc tgctggtcgc 420
tcatggtgcc ttcacgcagt ccatgaccat cgtcaccgtg tatgacactt tgggcgagga 480
aggattgctg cactcgatga acgaggccga ggtgggaacg gcctacacga acgctgattt 540
gatcaagaca atgaccaacg tttcaggacg ctgccccacc ctcaagagga tcgtctatga 600
cggcgaagcc aacgcagcag acgtgatcgc ccttcagacg gcccatcctc accttcagct 660
tatcactctg gaggagctga agcagctcgg tgtggatcac cctgtggagc ccactcctcc 720
caccgccgag gattgctcct gcatcatgta cacttctgga tcgaccggaa accctaaggg 780
agtcatcctc actcacggaa acctcattgc cgccattggc ggagttaaca agatgctgga 840
aaagtacatt cgcgaaggcg atgtcttgct tgcctacctt cccttggctc acgttctgga 900
attcatggtt gagaacctct gtctcttctg gggtgtaacc cttggatatg gtactgtccg 960
cacgctgacg gatgcctctg tgcgtgagtg ccagggtgat atcaaggaat tgcggcctac 1020
gcttatgacc ggcgttccag cagtgtggga gaccatccgc aaaggtgttc tcgcccaagt 1080
aaaccagggt tcacctctgg ttcaatccgt cttcaacgcg gctctgaacg ccaaggcctg 1140
gtgcatggac cgcaaactag gcgctttgac tggaattttc gacactgtgg tgttcaacaa 1200
ggtccgtcag caaactggag gtcgtcttcg ctacgcgctc tcgggcggcg cgcctatctc 1260
ccaggagacc cagcgcttct tgaccacagc actgtgccct atccttcaag cctatggcat 1320
gactgagtcg tgcggcatgt gctcgatcat gactccagag gcgttcaact acaaccgcgt 1380
cggttcccct gttccctgca cagaggtcaa gctcgtggat gtgcccgatg caggatactt 1440
ttcgactgat tcgccccgcc ctcgtggtga gatttggatt cgcggaccct ccatcacctc 1500
tggatacttc aagaacgctg aggagacctc ggcagccatc acagaggacc gctggctcaa 1560
gactggagat attggagagt ggcatgctga tggcacactc tcggtcattg atcgcaagaa 1620
gaacttggtc aagttgtcgc atggcgagta cattgctcta gagaaacttg agtcggtgta 1680
caagagcacg gcttactgca acaacatctg cgtttatgcc gattccatgc aaaacaagcc 1740
tgtggcgctg attgttgcga gtgaaccccg catcctcgag ctggccaagg ccaagggcct 1800
ggagagccgc gactttgcag tgctctgcca cgataaggtg atcatcaagg ctgtcctcga 1860
cgcctgtctc gcgactgcca aaaaggctgg cctcaagccc gccgagttgc tgcagggtgt 1920
gtacctggag tctgaggagt ggaccgctca aggcggtttg ttgactgctg ctcagaaatt 1980
gaagcgcaag gaaatcaacc aggcttatgc tgaccagatc aagcagatct atggctccaa 2040
gtaaaaatga ac 2052
<210> 55
<211> 2569
<212> DNA
<213> Mortierella alpina
<220>
<221> misc_feature
<222> (557)..(767)
<223> n is a, c, g, or t
<400> 55
atgccaaagt gctttaccgt caacgtcggc cccgaggacg tcaagggcga gactcgcatc 60
cgtcgctcca tccaggccgt cgacaaactc atggactcac cctcaagcga catcaagacc 120
ttgtacgatg tcatccagta ctctgccaag gtccgcccca acctcaacgc catcggctac 180
cgcaagattg tcaagatgat cgaagaggaa aaggagatca ccaagatggt cagcggcgag 240
cctgtcaagg agaaaaagac gtggaaatac ttcaagctct ccggctacca ctatctgacc 300
tacaaggaca ccaaggccgt catcgacagc attggaagtg gcctgcgcaa gtggggtgtt 360
gagcccaagg agaggatcac cgtctttggt tccacaaggt aatgtgtagc gccacgaaaa 420
tacgatcatt gcagcgtgaa gggtgggaag aattaggggg gaaatgacat cgataacagg 480
aacgaaaaaa aaaaaaaaca agacgaagtc ggagatcctc gctattggcg tttaagcacc 540
gccagcgttc ttttttnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 600
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 660
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn 720
nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnnnn nnnnnnnctt gttaaccaaa 780
ggctgacccg tacctcgttt gcttgacttg acacgtatag tgccaactgg ctgctggtcg 840
ctcatggtgc cttcacgcag tccatgacca tcgtcaccgt gtatgacact ttgggcgagg 900
aaggattgct gcactcgatg aacgaggccg aggtgggaac ggcctacacg aacgctgatt 960
tgatcaagac aatgaccaac gtttcaggac gctgccccac cctcaagagg atcgtctatg 1020
acggcgaagc caacgcagca gacgtgatcg cccttcagac ggcccatcct caccttcagc 1080
ttatcactct ggaggagctg aagcagctcg gtgtggatca ccctgtggag cccactcctc 1140
ccaccgccga ggattgctcc tgcatcatgt acacttctgg atcgaccgga aaccctaagg 1200
gagtcatcct cactcacgga aacctcattg ccgccagtag gtgtttctct cactctcttt 1260
aaccctctct ctttcacttg caaatatgct gggaatctct acttacctga atgttactgt 1320
tcttcgggtt atcaacctag ttggcggagt taacaagatg ctggaaaagt acattcgcga 1380
aggcgatgtc ttgcttgcct accttccctt ggctcacgtt ctggaattca tggttgagaa 1440
cctctgtctc ttctggggtg taacccttgg atatggtact gtccgcacgc tgacggatgc 1500
ctctgtgcgt gagtgccagg gtgatatcaa ggaattgcgg cctacgctta tgaccggcgt 1560
tccagcagtg tgggagacca tccgcaaagg tgttctcgcc caagtaaacc agggttcacc 1620
tctggttcaa tccgtcttca acgcggctct gaacgccaag gcctggtgca tggaccgcaa 1680
actaggcgct ttgactggaa ttttcgacac tgtggtgttc aacaaggtcc gtcagcaaac 1740
tggaggtcgt cttcgctacg cgctctcggg cggcgcgcct atctcccagg agacccagcg 1800
cttcttgacc acagcactgt gccctatcct tcaagcctat ggcatgactg agtcgtgcgg 1860
catgtgctcg atcatgactc cagaggcgtt caactacaac cgcgtcggtt cccctgttcc 1920
ctgcacagag gtcaagctcg tggatgtgcc cgatgcagga tacttttcga ctgattcgcc 1980
ccgccctcgt ggtgagattt ggattcgcgg accctccatc acctctggat acttcaagaa 2040
cgctgaggag acctcggcag ccatcacaga ggaccgctgg ctcaagactg gagatattgg 2100
agagtggcat gctgatggca cactctcggt cattgatcgc aagaagaact tggtcaagtt 2160
gtcgcatggc gagtacattg ctctagagaa acttgagtcg gtgtacaaga gcacggctta 2220
ctgcaacaac atctgcgttt atgccgattc catgcaaaac aagcctgtgg cgctgattgt 2280
tgcgagtgaa ccccgcatcc tcgagctggc caaggccaag ggcctggaga gccgcgactt 2340
tgcagtgctc tgccacgata aggtgatcat caaggctgtc ctcgacgcct gtctcgcgac 2400
tgccaaaaag gctggcctca agcccgccga gttgctgcag ggtgtgtacc tggagtctga 2460
ggagtggacc gctcaaggcg gtttgttgac tgctgctcag aaattgaagc gcaaggaaat 2520
caaccaggct tatgctgacc agatcaagca gatctatggc tccaagtaa 2569
<210> 56
<211> 2040
<212> DNA
<213> Mortierella alpina
<400> 56
atgacaaagt gcctcaccgt cgaagtcgga cccgccgacg tccagggcga gacccgcatc 60
cgccgctccg tcctctctgc aaagcgcctc atgtcctcgc cctcggatga catcaagacc 120
ctctacgacg tcttcaacca ctccgtcacc gtccgcccca acctcaacgc gatcggatac 180
cgcaaggtcg tcaagattgt cgaggaagaa aaggaggtcg tcaaggttgt caacggcgag 240
gaagtcaagg aaaagaagac ctggaagttc ttcaagatgt ccggctacca ctggctcacc 300
tacaaggatg cgaagcaggt cgtcgacagc atcggatgcg gtcttcgcaa gtttggcgtc 360
gagcccaagg acaagctgac cgttttcggt gccacaagtg ccaactggct cctgcttgcc 420
cacggtgctt tcacccagtc catcaccatt gttaccgcct acgacaccct gggcgaggac 480
ggtcttttgc actctatgaa cgaggccgag gtggccaccg cttacacaaa cgccgacttg 540
ctcaacacta tcaagaacgt tgccggcaaa tgccccaccc tgaagaagat catctacgac 600
ggcgatgcca agcccgcaga tgtcattgcc ctccaggagg cccatcctca cctccagctc 660
atcaccctcg aggagctgaa gcagctcgga gtggacaacc ctgtcgcccc aacccctcct 720
gctgccaagg actactgctg catcatgtac acttcgggat cgactggcaa ccccaaggga 780
gtgttgctga cccatggaaa cctcgttgct gccatcggag gtgtgaacaa gatgctgaca 840
aagtacgttc acgagggaga cgtcttgctc gcgtacttgc ctcttgctca cgttctcgag 900
ttcctggtcg aaaacgtctg tctcttctgg ggtgtgactc ttggctacgg taccgtccgc 960
acattgactg atgcctcagt ccgtgagtgc cagggtgata tcaaggagtt gcgccctaca 1020
ttgatgaccg gtgttcctgc tgtgtgggag acgattcgta agggagtgtt ggctcaggtt 1080
tcccagggct cacctcttgt tcaaaagatc ttccatgctg ctttgaacgc caaggcctgg 1140
tgcctggacc gcaagttggg tgcgttgact ggaatcttcg atactgtcgt cttcaacaag 1200
gtcaagcagc agacaggagg acgtcttcgc ttcgcccttt cgggaggtgc acccatctct 1260
caggagaccc agcgcttctt gacgacagct ttgtgcccta tcctccaggg ctacggtatg 1320
acagagtctt gcggcatgtg cgccattttg acccccgatg tcttcaacta cagccgtgtc 1380
ggatccccag ttccttgcac ggaggtcaag ttggtcgatg tgcccgatgc aggataccac 1440
tcaacggact tgcctctccc ccgtggtgag gtctgcattc gtggaccctc catcactgct 1500
ggatacttca agaaccccga ggagacctcc gccacattga ctgctgatcg ctggctcaag 1560
actggagata tcggagagtg gcaccccgac ggcactatct cgatcattga ccgcaagaag 1620
aacttggtca agctgtcaca cggagagtac attgctttgg agaagcttga gtctgtctac 1680
aagagcacag cctactgcaa caacatttgc gtgtatgccg actcgatgca gaacaagccc 1740
gttgccatta ttgttgccag cgaaccccgc atcctcgagt tggccaaggc caagggcatt 1800
gagagccgcg actttgctgc tctctgccac gacaaggtta tcatcaaggc tgtccacgat 1860
gcctgcctcg ccactgccaa gcgtgctgga ctcaagcccg ctgagatgct tcagggagtg 1920
tacttggagt cagaagaatg gacggcccag gctggcatgt tgactgccgc tcagaagctc 1980
aagcgcaagg agatcaacca ggcctatgtc tcacagatca agcagcttta tggaacggcc 2040
<210> 57
<211> 680
<212> PRT
<213> Mortierella alpina
<400> 57
Met Thr Lys Cys Leu Thr Val Glu Val Gly Pro Ala Asp Val Gln Gly
1 5 10 15
Glu Thr Arg Ile Arg Arg Ser Val Leu Ser Ala Lys Arg Leu Met Ser
20 25 30
Ser Pro Ser Asp Asp Ile Lys Thr Leu Tyr Asp Val Phe Asn His Ser
35 40 45
Val Thr Val Arg Pro Asn Leu Asn Ala Ile Gly Tyr Arg Lys Val Val
50 55 60
Lys Ile Val Glu Glu Glu Lys Glu Val Val Lys Val Val Asn Gly Glu
65 70 75 80
Glu Val Lys Glu Lys Lys Thr Trp Lys Phe Phe Lys Met Ser Gly Tyr
85 90 95
His Trp Leu Thr Tyr Lys Asp Ala Lys Gln Val Val Asp Ser Ile Gly
100 105 110
Cys Gly Leu Arg Lys Phe Gly Val Glu Pro Lys Asp Lys Leu Thr Val
115 120 125
Phe Gly Ala Thr Ser Ala Asn Trp Leu Leu Leu Ala His Gly Ala Phe
130 135 140
Thr Gln Ser Ile Thr Ile Val Thr Ala Tyr Asp Thr Leu Gly Glu Asp
145 150 155 160
Gly Leu Leu His Ser Met Asn Glu Ala Glu Val Ala Thr Ala Tyr Thr
165 170 175
Asn Ala Asp Leu Leu Asn Thr Ile Lys Asn Val Ala Gly Lys Cys Pro
180 185 190
Thr Leu Lys Lys Ile Ile Tyr Asp Gly Asp Ala Lys Pro Ala Asp Val
195 200 205
Ile Ala Leu Gln Glu Ala His Pro His Leu Gln Leu Ile Thr Leu Glu
210 215 220
Glu Leu Lys Gln Leu Gly Val Asp Asn Pro Val Ala Pro Thr Pro Pro
225 230 235 240
Ala Ala Lys Asp Tyr Cys Cys Ile Met Tyr Thr Ser Gly Ser Thr Gly
245 250 255
Asn Pro Lys Gly Val Leu Leu Thr His Gly Asn Leu Val Ala Ala Ile
260 265 270
Gly Gly Val Asn Lys Met Leu Thr Lys Tyr Val His Glu Gly Asp Val
275 280 285
Leu Leu Ala Tyr Leu Pro Leu Ala His Val Leu Glu Phe Leu Val Glu
290 295 300
Asn Val Cys Leu Phe Trp Gly Val Thr Leu Gly Tyr Gly Thr Val Arg
305 310 315 320
Thr Leu Thr Asp Ala Ser Val Arg Glu Cys Gln Gly Asp Ile Lys Glu
325 330 335
Leu Arg Pro Thr Leu Met Thr Gly Val Pro Ala Val Trp Glu Thr Ile
340 345 350
Arg Lys Gly Val Leu Ala Gln Val Ser Gln Gly Ser Pro Leu Val Gln
355 360 365
Lys Ile Phe His Ala Ala Leu Asn Ala Lys Ala Trp Cys Leu Asp Arg
370 375 380
Lys Leu Gly Ala Leu Thr Gly Ile Phe Asp Thr Val Val Phe Asn Lys
385 390 395 400
Val Lys Gln Gln Thr Gly Gly Arg Leu Arg Phe Ala Leu Ser Gly Gly
405 410 415
Ala Pro Ile Ser Gln Glu Thr Gln Arg Phe Leu Thr Thr Ala Leu Cys
420 425 430
Pro Ile Leu Gln Gly Tyr Gly Met Thr Glu Ser Cys Gly Met Cys Ala
435 440 445
Ile Leu Thr Pro Asp Val Phe Asn Tyr Ser Arg Val Gly Ser Pro Val
450 455 460
Pro Cys Thr Glu Val Lys Leu Val Asp Val Pro Asp Ala Gly Tyr His
465 470 475 480
Ser Thr Asp Leu Pro Leu Pro Arg Gly Glu Val Cys Ile Arg Gly Pro
485 490 495
Ser Ile Thr Ala Gly Tyr Phe Lys Asn Pro Glu Glu Thr Ser Ala Thr
500 505 510
Leu Thr Ala Asp Arg Trp Leu Lys Thr Gly Asp Ile Gly Glu Trp His
515 520 525
Pro Asp Gly Thr Ile Ser Ile Ile Asp Arg Lys Lys Asn Leu Val Lys
530 535 540
Leu Ser His Gly Glu Tyr Ile Ala Leu Glu Lys Leu Glu Ser Val Tyr
545 550 555 560
Lys Ser Thr Ala Tyr Cys Asn Asn Ile Cys Val Tyr Ala Asp Ser Met
565 570 575
Gln Asn Lys Pro Val Ala Ile Ile Val Ala Ser Glu Pro Arg Ile Leu
580 585 590
Glu Leu Ala Lys Ala Lys Gly Ile Glu Ser Arg Asp Phe Ala Ala Leu
595 600 605
Cys His Asp Lys Val Ile Ile Lys Ala Val His Asp Ala Cys Leu Ala
610 615 620
Thr Ala Lys Arg Ala Gly Leu Lys Pro Ala Glu Met Leu Gln Gly Val
625 630 635 640
Tyr Leu Glu Ser Glu Glu Trp Thr Ala Gln Ala Gly Met Leu Thr Ala
645 650 655
Ala Gln Lys Leu Lys Arg Lys Glu Ile Asn Gln Ala Tyr Val Ser Gln
660 665 670
Ile Lys Gln Leu Tyr Gly Thr Ala
675 680
<210> 58
<211> 2043
<212> DNA
<213> Mortierella alpina
<400> 58
atgacaaagt gcctcaccgt cgaagtcgga cccgccgacg tccagggcga gacccgcatc 60
cgccgctccg tcctctctgc aaagcgcctc atgtcctcgc cctcggatga catcaagacc 120
ctctacgacg tcttcaacca ctccgtcacc gtccgcccca acctcaacgc gatcggatac 180
cgcaaggtcg tcaagattgt cgaggaagaa aaggaggtcg tcaaggttgt caacggcgag 240
gaagtcaagg aaaagaagac ctggaagttc ttcaagatgt ccggctacca ctggctcacc 300
tacaaggatg cgaagcaggt cgtcgacagc atcggatgcg gtcttcgcaa gtttggcgtc 360
gagcccaagg acaagctgac cgttttcggt gccacaagtg ccaactggct cctgcttgcc 420
cacggtgctt tcacccagtc catcaccatt gttaccgcct acgacaccct gggcgaggac 480
ggtcttttgc actctatgaa cgaggccgag gtggccaccg cttacacaaa cgccgacttg 540
ctcaacacta tcaagaacgt tgccggcaaa tgccccaccc tgaagaagat catctacgac 600
ggcgatgcca agcccgcaga tgtcattgcc ctccaggagg cccatcctca cctccagctc 660
atcaccctcg aggagctgaa gcagctcgga gtggacaacc ctgtcgcccc aacccctcct 720
gctgccaagg actactgctg catcatgtac acttcgggat cgactggcaa ccccaaggga 780
gtgttgctga cccatggaaa cctcgttgct gccatcggag gtgtgaacaa gatgctgaca 840
aagtacgttc acgagggaga cgtcttgctc gcgtacttgc ctcttgctca cgttctcgag 900
ttcctggtcg aaaacgtctg tctcttctgg ggtgtgactc ttggctacgg taccgtccgc 960
acattgactg atgcctcagt ccgtgagtgc cagggtgata tcaaggagtt gcgccctaca 1020
ttgatgaccg gtgttcctgc tgtgtgggag acgattcgta agggagtgtt ggctcaggtt 1080
tcccagggct cacctcttgt tcaaaagatc ttccatgctg ctttgaacgc caaggcctgg 1140
tgcctggacc gcaagttggg tgcgttgact ggaatcttcg atactgtcgt cttcaacaag 1200
gtcaagcagc agacaggagg acgtcttcgc ttcgcccttt cgggaggtgc acccatctct 1260
caggagaccc agcgcttctt gacgacagct ttgtgcccta tcctccaggg ctacggtatg 1320
acagagtctt gcggcatgtg cgccattttg acccccgatg tcttcaacta cagccgtgtc 1380
ggatccccag ttccttgcac ggaggtcaag ttggtcgatg tgcccgatgc aggataccac 1440
tcaacggact tgcctctccc ccgtggtgag gtctgcattc gtggaccctc catcactgct 1500
ggatacttca agaaccccga ggagacctcc gccacattga ctgctgatcg ctggctcaag 1560
actggagata tcggagagtg gcaccccgac ggcactatct cgatcattga ccgcaagaag 1620
aacttggtca agctgtcaca cggagagtac attgctttgg agaagcttga gtctgtctac 1680
aagagcacag cctactgcaa caacatttgc gtgtatgccg actcgatgca gaacaagccc 1740
gttgccatta ttgttgccag cgaaccccgc atcctcgagt tggccaaggc caagggcatt 1800
gagagccgcg actttgctgc tctctgccac gacaaggtta tcatcaaggc tgtccacgat 1860
gcctgcctcg ccactgccaa gcgtgctgga ctcaagcccg ctgagatgct tcagggagtg 1920
tacttggagt cagaagaatg gacggcccag gctggcatgt tgactgccgc tcagaagctc 1980
aagcgcaagg agatcaacca ggcctatgtc tcacagatca agcagcttta tggaacggcc 2040
taa 2043
<210> 59
<211> 2392
<212> DNA
<213> Mortierella alpina
<400> 59
cctttatccc cgcaccgcca tctctcgccg ccaccatctc gcattccttt caatccacac 60
tcccacctgt gccccctgct tttcacgtcc cgctctcatc ccgccttctc ctttcatcac 120
cccaattcaa catgacaaag tgcctcaccg tcgaagtcgg acccgccgac gtccagggcg 180
agacccgcat ccgccgctcc gtcctctctg caaagcgcct catgtcctcg ccctcggatg 240
acatcaagac cctctacgac gtcttcaacc actccgtcac cgtccgcccc aacctcaacg 300
cgatcggata ccgcaaggtc gtcaagattg tcgaggaaga aaaggaggtc gtcaaggttg 360
tcaacggcga ggaagtcaag gaaaagaaga cctggaagtt cttcaagatg tccggctacc 420
actggctcac ctacaaggat gcgaagcagg tcgtcgacag catcggatgc ggtcttcgca 480
agtttggcgt cgagcccaag gacaagctga ccgttttcgg tgccacaagt gccaactggc 540
tcctgcttgc ccacggtgct ttcacccagt ccatcaccat tgttaccgcc tacgacaccc 600
tgggcgagga cggtcttttg cactctatga acgaggccga ggtggccacc gcttacacaa 660
acgccgactt gctcaacact atcaagaacg ttgccggcaa atgccccacc ctgaagaaga 720
tcatctacga cggcgatgcc aagcccgcag atgtcattgc cctccaggag gcccatcctc 780
acctccagct catcaccctc gaggagctga agcagctcgg agtggacaac cctgtcgccc 840
caacccctcc tgctgccaag gactactgct gcatcatgta cacttcggga tcgactggca 900
accccaaggg agtgttgctg acccatggaa acctcgttgc tgccatcgga ggtgtgaaca 960
agatgctgac aaagtacgtt cacgagggag acgtcttgct cgcgtacttg cctcttgctc 1020
acgttctcga gttcctggtc gaaaacgtct gtctcttctg gggtgtgact cttggctacg 1080
gtaccgtccg cacattgact gatgcctcag tccgtgagtg ccagggtgat atcaaggagt 1140
tgcgccctac attgatgacc ggtgttcctg ctgtgtggga gacgattcgt aagggagtgt 1200
tggctcaggt ttcccagggc tcacctcttg ttcaaaagat cttccatgct gctttgaacg 1260
ccaaggcctg gtgcctggac cgcaagttgg gtgcgttgac tggaatcttc gatactgtcg 1320
tcttcaacaa ggtcaagcag cagacaggag gacgtcttcg cttcgccctt tcgggaggtg 1380
cacccatctc tcaggagacc cagcgcttct tgacgacagc tttgtgccct atcctccagg 1440
gctacggtat gacagagtct tgcggcatgt gcgccatttt gacccccgat gtcttcaact 1500
acagccgtgt cggatcccca gttccttgca cggaggtcaa gttggtcgat gtgcccgatg 1560
caggatacca ctcaacggac ttgcctctcc cccgtggtga ggtctgcatt cgtggaccct 1620
ccatcactgc tggatacttc aagaaccccg aggagacctc cgccacattg actgctgatc 1680
gctggctcaa gactggagat atcggagagt ggcaccccga cggcactatc tcgatcattg 1740
accgcaagaa gaacttggtc aagctgtcac acggagagta cattgctttg gagaagcttg 1800
agtctgtcta caagagcaca gcctactgca acaacatttg cgtgtatgcc gactcgatgc 1860
agaacaagcc cgttgccatt attgttgcca gcgaaccccg catcctcgag ttggccaagg 1920
ccaagggcat tgagagccgc gactttgctg ctctctgcca cgacaaggtt atcatcaagg 1980
ctgtccacga tgcctgcctc gccactgcca agcgtgctgg actcaagccc gctgagatgc 2040
ttcagggagt gtacttggag tcagaagaat ggacggccca ggctggcatg ttgactgccg 2100
ctcagaagct caagcgcaag gagatcaacc aggcctatgt ctcacagatc aagcagcttt 2160
atggaacggc ctaagtcgct gaaaggtgtg cctttgtccg tctcttcaac cccacaagtc 2220
ctatgtataa tgacccgcgc ggccctcctt taatcctata cccacccttt tttacacgtt 2280
aaagaagcca catttttggt tctttttttt ctctcgcaca cactacacac tccccatcca 2340
ttccctccaa acaggatggt tgtctgcaaa taaattgacg aattttctct tg 2392
<210> 60
<211> 2537
<212> DNA
<213> Mortierella alpina
<400> 60
atgacaaagt gcctcaccgt cgaagtcgga cccgccgacg tccagggcga gacccgcatc 60
cgccgctccg tcctctctgc aaagcgcctc atgtcctcgc cctcggatga catcaagacc 120
ctctacgacg tcttcaacca ctccgtcacc gtccgcccca acctcaacgc gatcggatac 180
cgcaaggtcg tcaagattgt cgaggaagaa aaggaggtcg tcaaggttgt caacggcgag 240
gaagtcaagg aaaagaagac ctggaagttc ttcaagatgt ccggctacca ctggctcacc 300
tacaaggatg cgaagcaggt cgtcgacagc atcggatgcg gtcttcgcaa gtttggcgtc 360
gagcccaagg acaagctgac cgttttcggt gccacaaggt aagaaagagg cataacaaga 420
aaatgcaaga gaggcaaaaa aaatggcttg acgtgagagc ataagggaac caacagacag 480
gtgtttgtgt gggttgcgga tagtgggtga gcatgcttcg ttatcgaatg tgggagaaga 540
gagcggacgc gaatatggct ctcgtctctg gcgggatgcg agtggccaag tgtgggatac 600
atatcctcgc ggtggggtgt ccgggtcggc ccttgaatct tgttgaagca tgataatgtg 660
aatgtggacc gcaatcacgc tcagattatg cgtagcaagc gtgttgctag tctacatcat 720
gctcacacgt attcacattt attcattttc actctatctc gctcttagtg ccaactggct 780
cctgcttgcc cacggtgctt tcacccagtc catcaccatt gttaccgcct acgacaccct 840
gggcgaggac ggtcttttgc actctatgaa cgaggccgag gtggccaccg cttacacaaa 900
cgccgacttg ctcaacacta tcaagaacgt tgccggcaaa tgccccaccc tgaagaagat 960
catctacgac ggcgatgcca agcccgcaga tgtcattgcc ctccaggagg cccatcctca 1020
cctccagctc atcaccctcg aggagctgaa gcagctcgga gtggacaacc ctgtcgcccc 1080
aacccctcct gctgccaagg actactgctg catcatgtac acttcgggat cgactggcaa 1140
ccccaaggga gtgttgctga cccatggaaa cctcgttgct gccagtacgt atctttctcg 1200
tcatgatcgt cctcccgcat ttccactgcg cttgttacca tttgatggga aatgtattta 1260
acccgaacca cacatttttt ctttttctca cacttgccac gtcactagtc ggaggtgtga 1320
acaagatgct gacaaagtac gttcacgagg gagacgtctt gctcgcgtac ttgcctcttg 1380
ctcacgttct cgagttcctg gtcgaaaacg tctgtctctt ctggggtgtg actcttggct 1440
acggtaccgt ccgcacattg actgatgcct cagtccgtga gtgccagggt gatatcaagg 1500
agttgcgccc tacattgatg accggtgttc ctgctgtgtg ggagacgatt cgtaagggag 1560
tgttggctca ggtttcccag ggctcacctc ttgttcaaaa gatcttccat gctgctttga 1620
acgccaaggc ctggtgcctg gaccgcaagt tgggtgcgtt gactggaatc ttcgatactg 1680
tcgtcttcaa caaggtcaag cagcagacag gaggacgtct tcgcttcgcc ctttcgggag 1740
gtgcacccat ctctcaggag acccagcgct tcttgacgac agctttgtgc cctatcctcc 1800
agggctacgg tatgacagag tcttgcggca tgtgcgccat tttgaccccc gatgtcttca 1860
actacagccg tgtcggatcc ccagttcctt gcacggaggt caagttggtc gatgtgcccg 1920
atgcaggata ccactcaacg gacttgcctc tcccccgtgg tgaggtctgc attcgtggac 1980
cctccatcac tgctggatac ttcaagaacc ccgaggagac ctccgccaca ttgactgctg 2040
atcgctggct caagactgga gatatcggag agtggcaccc cgacggcact atctcgatca 2100
ttgaccgcaa gaagaacttg gtcaagctgt cacacggaga gtacattgct ttggagaagc 2160
ttgagtctgt ctacaagagc acagcctact gcaacaacat ttgcgtgtat gccgactcga 2220
tgcagaacaa gcccgttgcc attattgttg ccagcgaacc ccgcatcctc gagttggcca 2280
aggccaaggg cattgagagc cgcgactttg ctgctctctg ccacgacaag gttatcatca 2340
aggctgtcca cgatgcctgc ctcgccactg ccaagcgtgc tggactcaag cccgctgaga 2400
tgcttcaggg agtgtacttg gagtcagaag aatggacggc ccaggctggc atgttgactg 2460
ccgctcagaa gctcaagcgc aaggagatca accaggccta tgtctcacag atcaagcagc 2520
tttatggaac ggcctaa 2537
<210> 61
<211> 22
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 61
gtcggctcca agcttgcaat cc 22
<210> 62
<211> 25
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 62
ggacagctcc agcactgtgg taaag 25
<210> 63
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 63
gaccacggga ttccccaagg ctgc 24
<210> 64
<211> 25
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 64
cttggtcgcg cttgttcctg gccac 25
<210> 65
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 65
tacagctttg ttgctgtccc catc 24
<210> 66
<211> 25
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 66
gatgatgggt gtgcttgcaa agatc 25
<210> 67
<211> 25
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 67
aacccaaagc tgcgccaggc tgtcc 25
<210> 68
<211> 25
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 68
ttacagcttg gattcctttt gatgg 25
<210> 69
<211> 22
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 69
gtcgtgcccg atgcggagac gc 22
<210> 70
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 70
tcagtggatc ccgttataca tcag 24
<210> 71
<211> 23
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 71
gcgtccccct ctatgataca ttg 23
<210> 72
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 72
gtgggatgca ggacggcaac atcg 24
<210> 73
<211> 23
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 73
ggatgccgaa caacagcgcg tgg 23
<210> 74
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 74
gcaccctcct cagaaacagc cctc 24
<210> 75
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 75
cagtcgagta cattgtcaac cacg 24
<210> 76
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 76
gcggttcaag aggcgaggca cagc 24
<210> 77
<211> 25
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 77
gttcatcttc tgctggctgg gtctc 25
<210> 78
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 78
gttgcgttgt tcacgcggca atcc 24
<210> 79
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 79
atggaaacct tggttaacgg aaag 24
<210> 80
<211> 24
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 80
tcagcaaaga tggccttggg ctgg 24
<210> 81
<211> 22
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 81
gtcaagggcg agactcgcat cc 22
<210> 82
<211> 23
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 82
cggtgacgat ggtcatggac tgc 23
<210> 83
<211> 23
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 83
gcgagacccg catccgccgc tcc 23
<210> 84
<211> 23
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 84
gaccgtcctc gcccagggtg tcg 23
<210> 85
<211> 31
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 85
ggatccatgc cttccttcaa aaagtacaac c 31
<210> 86
<211> 30
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 86
cccgggcaaa gagttttcta tctacagctt 30
<210> 87
<211> 25
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 87
gaattcatgg ttgctctccc actcg 25
<210> 88
<211> 27
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 88
ggatccctac tatagcttgg ccttgcc 27
<210> 89
<211> 29
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 89
ggatccatgt atgtcggctc caagcttgc 29
<210> 90
<211> 31
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 90
gtcgactcaa agcctggctt tgccgctgac g 31
<210> 91
<211> 30
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 91
ggatccatgg aaaccttggt taacggaaag 30
<210> 92
<211> 29
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 92
ggtacctaga acttcttcca catctcctc 29
<210> 93
<211> 31
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 93
gagctcatgc caaagtgctt taccgtcaac g 31
<210> 94
<211> 31
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 94
ggatccttac ttggagccat agatctgctt g 31
<210> 95
<211> 28
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 95
tctagaatgg cacctcccaa cactattg 28
<210> 96
<211> 30
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 96
aagcttttac ttcttgaaaa agaccacgtc 30
<210> 97
<211> 29
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 97
tctagaatgg ctgctgctcc cagtgtgag 29
<210> 98
<211> 29
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 98
aagcttttac tgtgccttgc ccatcttgg 29
<210> 99
<211> 28
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 99
tctagaatgg agtcgattgc gcaattcc 28
<210> 100
<211> 30
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 100
gagctcttac tgcaacttcc ttgccttctc 30
<210> 101
<211> 30
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 101
tctagaatgg gtgcggacac aggaaaaacc 30
<210> 102
<211> 30
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 102
aagcttttac tcttccttgg gacgaagacc 30
<210> 103
<211> 28
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 103
gaattcatga caaagtgcct caccgtcg 28
<210> 104
<211> 29
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 104
cccgggactt aggccgttcc ataaagctg 29
<210> 105
<211> 54
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 105
aattcataag aatgcggccg ctaaactatt ctagactagg tcgacggcgc gcca 54
<210> 106
<211> 54
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 106
agcttggcgc gccgtcgacc tagtctagaa tagtttagcg gccgcattct tatg 54
<210> 107
<211> 26
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 107
agcggccgca taggggagat cgaacc 26
<210> 108
<211> 33
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 108
agaattcggc gcgccatgca cgggtccttc tca 33
<210> 109
<211> 20
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 109
gtcgaccatg acaagtttgc 20
<210> 110
<211> 21
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 110
gtcgactgga agacgagcac g 21
<210> 111
<211> 43
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 111
ggcaaacttg tcatgaagcg aaagagagat tatgaaaaca agc 43
<210> 112
<211> 42
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 112
cactcccttt tcttaattgt tgagagagtg ttgggtgaga gt 42
<210> 113
<211> 27
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 113
taagaaaagg gagtgaatcg cataggg 27
<210> 114
<211> 23
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 114
catgacaagt ttgccaagat gcg 23
<210> 115
<211> 28
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 115
attgttgaga gagtgttggg tgagagtg 28
<210> 116
<211> 40
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 116
cactctctca acaatatgga aaccttggtt aacggaaagt 40
<210> 117
<211> 45
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 117
cactcccttt tcttactaga acttcttcca catctcctca atatc 45
<210> 118
<211> 41
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 118
cactcccttt tcttattact tggagccata gatctgcttg a 41
<210> 119
<211> 39
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 119
cactctctca acaatatgcc aaagtgcttt accgtcaac 39
<210> 120
<211> 16
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 120
gtcccgaatg gttcct 16
<210> 121
<211> 17
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 121
agcggttttc tacttgc 17
<210> 122
<211> 16
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 122
aactacaacc gcgtcg 16
<210> 123
<211> 16
<212> DNA
<213> Artificial
<220>
<223> Synthetic DNA
<400> 123
cggcataaac gcagat 16
Claims (12)
- 이하의 (a) 내지 (e)로 이루어지는 군에서 선택되는 어느 하나에 기재된 폴리뉴클레오타이드:
(a) 서열 번호 46, 51, 56, 36, 21, 1, 6, 11, 16, 26, 31 및 41에 나타낸 염기 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열을 함유하는 폴리뉴클레오타이드;
(b) 서열 번호 47, 52, 57, 37, 22, 2, 7, 12, 17, 27, 32 및 42에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열로 이루어지는 단백질을 코딩하는 폴리뉴클레오타이드;
(c) 서열 번호 47, 52, 57, 37, 22, 2, 7, 12, 17, 27, 32 및 42에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 있어서, 1 내지 100개의 아미노산이 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드;
(d) 서열 번호 47, 52, 57, 37, 22, 2, 7, 12, 17, 27, 32 및 42에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 대해, 60% 이상의 동일성을 갖는 아미노산 서열을 갖는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드; 및
(e) 서열 번호 46, 51, 56, 36, 21, 1, 6, 11, 16, 26, 31 및 41에 나타낸 염기 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열과 상보적인 염기 서열로 이루어지는 폴리뉴클레오타이드와 스트린젠트한 조건 하에서 하이브리다이즈하는 폴리뉴클레오타이드로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드. - 제1항에 있어서, 이하의 (f) 또는 (g) 중 어느 하나에 기재된 것인 폴리뉴클레오타이드:
(f) 서열 번호 47, 52, 57, 37, 22, 2, 7, 12, 17, 27, 32 및 42에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 있어서 1 내지 10개의 아미노산이 결실, 치환, 삽입 및/또는 부가된 아미노산 서열로 이루어지는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드; 및
(g) 서열 번호 47, 52, 57, 37, 22, 2, 7, 12, 17, 27, 32 및 42에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열에 대해, 90% 이상의 동일성을 갖는 아미노산 서열을 갖는 단백질로서, 아실-CoA 신세타제 활성, 숙주 세포에서 발현시킨 경우에 상기 숙주 세포가 생산하는 지방산의 양을 증가시키는 활성 또는 조성을 변화시키는 활성을 갖는 단백질을 코딩하는 폴리뉴클레오타이드. - 제1항에 있어서, 서열 번호 46, 51, 56, 36, 21, 1, 6, 11, 16, 26, 31 및 41에 나타낸 염기 서열로 이루어지는 군에서 선택되는 어느 하나의 염기 서열을 함유하는 폴리뉴클레오타이드.
- 제1항에 있어서, 서열 번호 47, 52, 57, 37, 22, 2, 7, 12, 17, 27, 32 및 42에 나타낸 아미노산 서열로 이루어지는 군에서 선택되는 어느 하나의 아미노산 서열로 이루어지는 단백질을 코딩하는 폴리뉴클레오타이드.
- 제1항 내지 제4항 중 어느 한 항에 있어서, DNA인 폴리뉴클레오타이드.
- 제1항 내지 제5항 중 어느 한 항에 따른 폴리뉴클레오타이드로 코딩되는 단백질.
- 제1항 내지 제5항 중 어느 한 항에 따른 폴리뉴클레오타이드를 함유하는 벡터.
- 제1항 내지 제5항 중 어느 한 항에 따른 폴리뉴클레오타이드, 또는 제7항에 따른 벡터가 도입된 비인간 형질전환체.
- 제8항에 따른 형질전환체의 배양물로부터 지질 또는 지방산 조성물을 채취하는 것을 특징으로 하는 지질 또는 지방산 조성물의 제조 방법.
- 제9항에 있어서, 상기 지질이 트리아실글리세롤인 제조 방법.
- 제9항에 있어서, 상기 지방산이 탄소수 18 이상의 고도 불포화 지방산인 제조 방법.
- 제9항에 따른 제조 방법에 의해 채취된 지질 또는 지방산 조성물을 함유하는 식품, 의약품, 화장품 또는 비누.
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KR1020177003767A KR101758591B1 (ko) | 2010-02-01 | 2011-02-01 | 아실-CoA 신세타제 호몰로그를 코딩하는 폴리뉴클레오타이드 및 그 용도 |
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