JPH11511008A - 組換えヘキソースオキシダーゼ、該酵素を産生する方法、および該酵素の利用 - Google Patents
組換えヘキソースオキシダーゼ、該酵素を産生する方法、および該酵素の利用Info
- Publication number
- JPH11511008A JPH11511008A JP9500090A JP50009097A JPH11511008A JP H11511008 A JPH11511008 A JP H11511008A JP 9500090 A JP9500090 A JP 9500090A JP 50009097 A JP50009097 A JP 50009097A JP H11511008 A JPH11511008 A JP H11511008A
- Authority
- JP
- Japan
- Prior art keywords
- polypeptide
- gly
- tyr
- asp
- hexose oxidase
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
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- C12N9/00—Enzymes; Proenzymes; Compositions thereof; Processes for preparing, activating, inhibiting, separating or purifying enzymes
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- A21D8/02—Methods for preparing dough; Treating dough prior to baking
- A21D8/04—Methods for preparing dough; Treating dough prior to baking treating dough with microorganisms or enzymes
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- A23B2/725—Preservation of foods or foodstuffs, in general by treatment with chemicals in the form of liquids or solids
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Abstract
Description
Claims (1)
- 【特許請求の範囲】 1.ヘキソースオキシダーゼ活性を有するポリペプチドを製造する方法であって 、ポリペプチドをコードするDNA断片を単離または合成すること、該DNA断片をDN A断片のための適当な発現シグナルと結合される条件下で適当な宿主生物に導入 すること、ヘキソースオキシダーゼ活性ポリペプチドの発現が起こるような条件 下で宿主生物を培養すること、および培養液または宿主生物からポリペプチドを 回収することを含む、方法。 2.DNA断片が海藻種から単離されたものである、請求項1記載の方法。 3.海藻がコンドラス・クリスパス(Chondrus crispus)、イリドフィクス・フ ラッシドウム(Irydophycus flaccidum)、ユーソラ・クリスタータ(Euthora c ristata)からなる群より選択されたものである、請求項2記載の方法。 4.宿主生物が細菌種、菌類種、および酵母種からなる群より選択された微生物 である、請求項1記載の方法。 5.宿主生物が大腸菌、パン酵母(Saccharomyces cerevisiae)、ピキア・パス トリス(Pichia pastoris)からなる群より選択されるものである、請求項4記 載の方法。 6.DNA断片が、 (i)Tyr-Glu-Pro-Tyr-Gly-Gly-Val-Pro(配列番号:1) (ii)Ala-Ile-Ile-Asn-Val-Thr-Gly-Leu-Val-Glu-Ser-Gly-Tyr-Asp-X-X-X-Gly- Tyr-X-Val-Ser-Ser(配列番号:2) (iii)Asp-Leu-Pro-Met-Ser-Pro-Arg-Gly-Val-Ile-Ala-Ser-Asn-Leu-X-Phe(配 列番号:3) (iv)Asp-Ser-Glu-Gly-Asn-Asp-Gly-Glu-Leu-Phe-X-Ala-His-Thr(配列番号: 4) (v)Tyr-Tyrr-Phe-Lys(配列番号:5) (vi)Asp-Pro-Gly-Tyr-Ile-Val-Ile-Asp-Val-Asn-Ala-Gly-Thr-X-Asp(配列番 号:6) (vii)Leu-Gln-Tyr-Gln-Thr-Tyr-Trp-Gln-Glu-Glu-Asp(配列番号:7) (viii)X-Ile-Arg-Asp-Phe-Tyr-Glu-Glu-Met(配列番号:8) (Xは、Ala、Arg、Asn、Asp、Asx、Cys、Gln、Glu、Glx、Gly、His、Ile、Leu、 Lys、Met、Phe、Pro、Ser、Thr、Trp、Tyr、およびValからなる群より選択され るアミノ酸、ならびにこれらの変異体および異形体を表す) からなる群より選択されたアミノ酸配列をコードする少なくとも一つのDNA配列 を含む、請求項1記載の方法。 7.さらなる工程として、培養液および/または微生物から最初に回収されたポ リペプチド調製物を、ポリペプチドが実質的に純粋な形態で含まれる調製物を得 るための精製を行うことを含む、請求項1記載の方法。 8.ヘキソースオキシダーゼ活性を有するポリペプチドが融合産物である、請求 項1記載の方法。 9.(i)Tyr-Glu-Pro-Tyr-Gly-Gly-Val-Pro(配列番号:1) (ii)Ala-Ile-Ile-Asn-Val-Thr-Gly-Leu-Val-Glu-Ser-Gly-Tyr-Asp-X-X-X-Gly- Tyr-X-Val-Ser-Ser(配列番号:2) (iii)Asp-Leu-Pro-Met-Ser-Pro-Arg-Gly-Val-Ile-Ala-Ser-Asn-Leu-X-Phe(配 列番号:3) (iv)Asp-Ser-Glu-Gly-Asn-Asp-Gly-Glu-Leu-Phe-X-Ala-His-Thr(配列番号: 4) (v)Tyr-Tyrr-Phe-Lys(配列番号:5) (vi)Asp-Pro-Gly-Tyr-Ile-Val-Ile-Asp-Val-Asn-Ala-Gly-Thr-X-Asp(配列番 号:6) (vii)Leu-Gln-Tyr-Gln-Thr-Tyr-Trp-Gln-Glu-Glu-Asp(配列番号:7) (viii)X-Ile-Arg-Asp-Phe-Tyr-Glu-Glu-Met(配列番号:8) (Xは、Ala、Arg、Asn、Asp、Asx、Cys、Gln、Glu、Glx、Gly、His、Ile、Leu、 Lys、Met、Phe、Pro、Ser、Thr、Trp、Tyr、およびValからなる群より選択され るアミノ酸、ならびにこれらの変異体および異形体を表す) からなる群より選択された少なくとも一つのアミノ酸配列を含む、ヘキソースオ キシダーゼ活性を有する、単離された形態のポリペプチド。 10.請求項1の方法により産生される、請求項9記載のポリペプチド。 11.細菌種、菌類種、および酵母種からなる群より選択された微生物細胞によ って産生される、請求項9記載のポリペプチド。 12.大腸菌細胞、パン酵母細胞、ピキア・パストリス細胞からなる群より選択 される細胞によって産生される、請求項11記載のポリペプチド。 13.実質的に非グリコシル化形態である、請求項9記載のポリペプチド。 14.コンドラス・クリスパス中に天然に存在するヘキソースオキシダーゼと同 一または部分的に同一な機能的特質を有する、請求項9記載のポリペプチド。 15.SDS-PAGEにおいて29、40、および/または60kDの独立したバンドを示す、 請求項14記載のポリペプチド。 16.pHが5〜9の範囲内で酵素活性を示す、請求項9記載のポリペプチド。 17.酵素活性の至適温度が20〜60℃の範囲である、請求項9記載のポリペプチ ド。 18.D-グルコース、D-ガラクトース、マルトース、セルビオース、ラクトース 、D-マンノース、D-フコースおよびD-キシロースからなる群より選択された少な くとも一つの糖を酸化する、請求項9記載のポリペプチド。 19.等電点が4〜5の範囲にある、請求項9記載のポリペプチド。 20.等電点が4.3±0.1である、請求項19記載のポリペプチド。 21.等電点が4.5±0.1である、請求項19記載のポリペプチド。 22.実質的に純粋な形態である、請求項9記載のポリペプチド。 23.セファクリルS-200スーパーファイン(Sephacryl S-200 Superfine)(フ アルマシア(Pharmacia)製)を用いたゲル濾過により決定された分子量が100〜 150kDの範囲にある、請求項9記載のポリペプチド。 24.みかけの分子量が110kD±10kDである、請求項23記載のポリペプチド。 25.付加的な酵素活性を有するアミノ酸配列を含む融合産物の一部である、請 求項9記載のポリペプチド。 26.ヘキソースオキシダーゼ活性を有するポリペプチドをコードするDNA断片 を含む組換えDNA分子。 27.DNA断片が、請求項9に記載のアミノ酸配列を少なくとも一つ含むポリペ プチド、または該ポリペプチドの変異体もしくは誘導体をコードするものである 、 請求項26記載のDNA分子。 28.以下のDNA配列(配列番号:30)を含む、請求項27記載のDNA分子。 29.請求項26の組換えDNA分子を含む微生物細胞。 30.細菌細胞、菌類細胞、および酵母細胞からなる群より選択される、請求項 29記載の細胞。 31.大腸菌細胞、乳酸細菌細胞、パン酵母細胞、およびピキア・パストリス細 胞からなる群より選択される、請求項29記載の細胞。 32.請求項9記載のポリペプチドまたは請求項29記載の微生物細胞が使用さ れる、食品を製造する方法。 33.食品が、酪農製品、デンプン含有食品、および非酪農飲料から選択される 、請求項32記載の方法。 34.ポリペプチドが抗微生物剤または抗酸化剤として機能する、請求項32記 載の方法。 35.ポリペプチドが食品梱包における酸素除去剤として機能する、請求項32 記載の方法。 36.請求項9記載のポリペプチドまたは請求項29記載の微生物細胞が使用さ れる、動物飼料を製造する方法。 37.動物飼料がサイレージである、請求項36記載の方法。 38.食品に当初存在する糖の少なくとも一部を除去するのに十分な量の、請求 項9記載のポリペプチドまたは請求項29記載の微生物細胞を、製品に添加する ことを含む、食品の糖含有量を低下させる方法。 39.請求項9記載のポリペプチドまたは請求項29記載の微生物細胞が使用さ れる、医薬品、化粧品および歯科保護製品からなる群より選択された製品を製造 する方法。 40.請求項9記載のポリペプチド、または該ポリペプチドを発現することので きる請求項29記載の微生物細胞を、練り粉に添加することを含む、練り粉から 焼固製品を調製する方法。 41.請求項9記載のポリペプチドまたは練り粉中で該ポリペプチドを発現する ことのできる請求項29記載の微生物細胞と、少なくとも一つの通常の練り粉成 分を含む、練り粉改善用組成物。 42.セルラーゼ、ヘミセルラーゼ、キシラナーゼ、ペントサナーゼ、アミラー ゼ、リパーゼ、およびプロテアーゼからなる群より選択された少なくとも一つの 酵素をさらに含む、請求項41記載の組成物。 43.請求項9記載のポリペプチドまたは請求項29記載の微生物細胞が分析用 試薬として使用される、試料中の糖含有量を分析する方法。 44.請求項9記載のポリペプチドまたは請求項29記載の微生物細胞を用いて ラクトンを製造する方法であって、該ポリペプチドにより酸化されうる炭水化物 を含むリアクターにポリペプチドおよび/または微生物細胞を適用すること、お よび炭水化物がラクトンに酸化される条件下でリアクターを作動させることを含 む、方法。
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PCT/DK1996/000238 WO1996040935A1 (en) | 1995-06-07 | 1996-06-04 | Recombinant hexose oxidase, a method of producing same and use of such enzyme |
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Cited By (2)
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JP2003514563A (ja) * | 1999-11-24 | 2003-04-22 | ダニスコ エイ/エス | タンパク質を精製する方法 |
JP4781588B2 (ja) * | 1999-11-24 | 2011-09-28 | ダニスコ エイ/エス | タンパク質を精製する方法 |
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