CN112553227A - 一种耐热多功能糖苷水解酶及其编码基因和应用 - Google Patents

一种耐热多功能糖苷水解酶及其编码基因和应用 Download PDF

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CN112553227A
CN112553227A CN202011611270.8A CN202011611270A CN112553227A CN 112553227 A CN112553227 A CN 112553227A CN 202011611270 A CN202011611270 A CN 202011611270A CN 112553227 A CN112553227 A CN 112553227A
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朱小燕
秦逸俊
张克杰
叶晨瑾
郑翔升
靳枫
丁浩
信珊珊
李相前
杨阳
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Huaiyin Institute of Technology
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Abstract

本发明公开了一种耐热多功能糖苷水解酶及其编码基因和应用,该基因全长4245bp,编码一个含1414个氨基酸的双催化结构域甘露聚糖酶和纤维素酶以及一个含有42个氨基酸的信号肽,其核苷酸序列如SEQ IDNO.1所示,氨基酸序列如SEQ IDNO.2所示。以pET‑28a(+)为表达质粒,以大肠杆菌E.coli Rosetta‑gami(DE3)为表达宿主,实现了多功能糖苷水解酶GH5的异源表达。具有以下性质:多功能糖苷水解酶以羧甲基纤维素钠为底物测定纤维素酶活时,最适温度为70°C、最适pH为5;以魔芋甘露聚糖为底物测定甘露聚糖酶活时,最适温度为85°C、最适pH为6.5;多功能糖苷水解酶GH5在pH4.5‑7之间具有较好的稳定性。本发明的多功能糖苷水解酶具有多种酶活性且稳定性好,在能源、饲料和食品等行业中具有很好的应用前景。

Description

一种耐热多功能糖苷水解酶及其编码基因和应用
技术领域
本发明涉及酶基因工程及酶工程领域,具体涉及一种耐热多功能糖苷水解酶及其编码基因和应用。
背景技术
木质纤维素是自然界中最丰富的可再生生物资源,是构成植物细胞壁的主要成分,由纤维素、半纤维素和其他相互交织的多聚物组成,是自然界中最丰富的可再生生物资源。糖苷水解酶如纤维素酶、甘露聚糖酶、木聚糖酶等,可以水解植物细胞壁多糖如纤维素、半纤维素等,可应用到生物燃料或生物基化学品中。植物细胞壁多糖的水解往往是多种糖苷水解酶的协同作用,多功能或双功能糖苷水解酶可以大大节约成本、简化酶的制备工艺,因此多功能酶糖苷水解酶得到了广泛研究和应用,如复旦大学专利CN101906406公开了一种具有内切葡聚糖酶/木聚糖酶活性的双功能酶及其制备方法与应用,该双功能酶在30°C-70°C下热处理1小时后以CMC为底物测定残留酶活,在低于50°C具有较好的热稳定性,温度高于50°C时酶的热稳定性随温度的升高而下降。安徽农业大学专利CN102634529B公开了一种纤维素和木聚糖双功能酶及其编码基因和应用,以CMC为底物测定残留酶活,酶的热稳定性试验表明60°C下保温60min, 8min前能保持60%以上活性,以后活性下降30min后活性几乎没有。
相对于一般热稳定酶而言,极耐热酶类更有优势,它具有高温下的高酶活性,常温下的稳定性和耐贮存性,减少杂菌污染概率等优点。因此挖掘性质优良的热稳定酶,对饲料工业、能源、食品等行业有着重要的意义。
发明内容
本发明的一个目的是提供一种耐热多功能糖苷水解酶GH5的氨基酸序列及其编码该蛋白质的基因序列,且给出了制备耐热多功能糖苷水解酶GH5的方法以及耐热多功能糖苷水解酶GH5在各种多糖水解中的应用,通过研究发现,该酶对热有较好的稳定性,能够很好的解决背景技术中的问题。
为实现上述目的,本发明的技术方案是:
一种多功能糖苷水解酶GH5基因,为序列表中的SEQID NO.1所示的核苷酸序列。
所述多功能糖苷水解酶基因的表达方法:分析多功能糖苷水解酶氨基酸序列,去除信号肽,根据去除信号肽部分核苷酸序列设计引物,通过PCR的方法获得编码基因SEQIDNO.1片段,多功能糖苷水解酶基因以pET-28a(+)为质粒构建重组表达质粒pET28a (+)-GH5,以大肠杆菌E. coli Rosetta-gami (DE3)为表达宿主,实现C.bescii DSM 6725多功能糖苷水解酶GH5的表达。
进一步地,为序列表中的SEQID NO.2所示的氨基酸序列。
通过将重组表达质粒转化宿主细胞而获得的重组菌。
进一步地,所述宿主细胞为大肠杆菌。
一种多功能糖苷水解酶的制备方法,包括培养重组菌,通过诱导蛋白表达、纯化从而获得重组多功能糖苷水解酶的步骤,具体如下:
(1) C.bescii DSM 6725多功能糖苷水解酶编码基因的克隆
根据基因序列设计以下引物GHF和GHR,以C.bescii DSM 6725总DNA为模板进行PCR。
引物GHF1:AATTTACCCAAAGTTGGTGCG
引物GHR1:TCATTTTGCGGCTGGAACTG
PCR反应在50 μl体系中进行,反应按如下条件进行:95°C 预变性5min; 94°C变性30s,50-60°C退火45 s,72°C延伸4 min30 s,30个循环;72°C终延伸10 min。
PCR产物进行琼脂糖凝胶电泳后割胶回收,与pMD-19 T载体连接后转入化大肠杆菌E. coliJM109,在含氨苄抗性(100 mg/L)的LB平板上筛选阳性转化子。挑取阳性转化子接入LB液体培养基,37°C培养12~16 h,提取质粒,该质粒命名为pMD19T-GH5,对该质粒进行序列测定。
(2)重组质粒的构建
根据基因序列设计以下分别带有BamHI和XhoI酶切位点的引物GHF2和GHR2,以pMD19T-GH5为模板进行PCR。
引物GHF2:CGCGGATCCAATTTACCCAAAGTTGGTGCG
引物GHR2:CCGCTCGACTCATTTTGCGGCTGGAACTG
PCR反应在50 μl体系中进行,反应按如下条件进行:95°C 预变性5min; 94°C变性30s,50-60°C退火45s,72°C延伸4min30s,30个循环;72°C终延伸10min。
PCR产物进行琼脂糖凝胶电泳后割胶回收。本研究所采用的表达质粒是pET-28a(+),将质粒pET-28a (+)和GH5的PCR产物分别进行双酶切后割胶回收,用T4连接酶在16 °C连接过夜,连接产物转化大肠杆菌E. coli JM109 感受态细胞,在含卡那霉素抗性(10 mg/L)的 LB平板培养过夜,筛选阳性转化子,进行富集培养后提取质粒,命名为pET28a(+)-GH5,对该质粒进行序列测定。
(3)重组菌的筛选
将重组质粒pET28a(+)-GH5在42 °C热击90 s转化宿主菌大肠杆菌E. coli Rosetta-gami(DE3)感受态细胞,在含卡那霉素(10 mg/L)和氯霉素(35 mg/L)抗性的LB平板培养过夜,筛选阳性转化子E. coli Rosetta-gami (DE3) /pET28a(+)-GH5,接入LB液体培养基中37 °C培养过夜,转接至新鲜的LB培养基中37 °C培养至OD600nm达0.6-0.8,添加终浓度0.5 mM的IPTG (异丙基硫代-β-D-半乳糖苷)在16°C下进行产酶诱导3-6 h,重组菌株表现出纤维素酶和甘露聚糖酶活性。
(4)重组多功能糖苷水解酶的分离纯化与酶学特征
将上述获得的含有多功能糖苷水解酶GH5的重组菌发酵液于4°C,8000 rpm离心10 min,去除上清;
离心收集的细胞悬浮于缓冲液A (50 mM Tris-HCl,pH7)中,制备成菌悬液。菌悬液在冰浴中用超声破碎仪破碎,200W功率下工作300次,每个循环工作2s停9s;
细胞裂解液4 °C 下10, 000 rpm 离心30 min,所得上清液即为无细胞抽提液。取无细胞抽提液用0.45 μ m滤膜过滤制备成上样样品,将Ni-NTA琼脂糖凝胶柱用缓冲液A冲洗至平衡,冲柱流速2 mL/min,而后对样品进行上柱,上柱流速1 mL/min,待完全吸附后,分别用含缓冲液A~含500 mM咪唑的缓冲液A梯度洗脱,洗脱流速2 mL/min,分别收集各阶段洗脱峰,通过SDS-PAGE分析纯化后的多功能糖苷水解酶的分子量大小和纯度。
多功能糖苷水解酶在多糖水解中的的应用:通过镍柱纯化的方法获得纯化的多功能糖苷水解酶GH5,以羧甲基纤维素钠和魔芋甘露聚糖为底物确定其反应的最适温度和pH,探索其温度稳定性和pH稳定性,并将其应用于多种多糖的水解。
(5)重组多功能糖苷水解酶的对各种多糖的水解
测定多功能酶对各种多糖的水解能力,所用底物包括木聚糖、淀粉、木葡聚糖、羧甲基纤维素钠、β-葡聚糖、β-1,4甘露聚糖、魔芋甘露聚糖、瓜尔豆胶。配置0.5%的各种底物,取50μL底物并加入90μL相应的缓冲液。底物与缓冲液的混合溶液加入10μL适当稀释的酶液,混匀并在70°C反应15min,加入150 μl的DNS煮沸5min,冷却至室温后测定OD540nm值。
酶活单位(U)定义为:在一定条件下,每分钟催化底物生成1μmol还原糖所需要的酶量为一个活性单位。
与现有技术相比,本发明具有如下有益效果:
一、本发明所涉及的多功能糖苷水解酶编码基因为目前国内外多功能糖苷水解酶首次报道在E. coli Rosetta-gami (DE3)中表达并将其应用;该多功能糖苷水解酶编码基因,它具有SEQ ID NO.1所示的核苷酸序列,全长4245bp个核苷酸,编码一个含1414个氨基酸的多功能糖苷水解酶,以及一个含有42个氨基酸的信号肽;
二、以pET28a(+)为表达质粒,以大肠杆菌E. coli Rosetta-gami (DE3)为表达宿主,实现了C. bescii DSM 6725多功能糖苷水解酶GH5的表达,重组菌E. coli Rosetta-gami (DE3)-GH5表现出纤维素酶和甘露聚糖酶活性。
三、多功能糖苷水解酶GH5以羧甲基纤维素钠为底物测定纤维素酶酶活时,最适温度为70°C、最适为pH为5;以魔芋甘露聚糖为底物测定甘露聚糖酶活时,最适温度为85°C、最适为pH为6.5;多功能酶GH5在pH4.5-7之间具有较好的稳定性;在40-70°C保温6 h,多功能酶糖苷水解酶GH5甘露聚糖酶和纤维素酶酶活性仍达到100%;40°C保温48 h,双功能酶GH5保留了98%的甘露聚糖酶活性和79%的纤维素酶活性,70°C保温48 h,双功能酶GH5保留了的65%甘露聚糖酶活性和58%的纤维素酶活性。
四、该多功能糖苷水解酶对木聚糖、羧甲基纤维素钠、β-葡聚糖、β-1,4-甘露聚糖、魔芋甘露聚糖、瓜尔豆胶均具有水解作用,同时具有纤维素酶、甘露聚糖酶、木聚糖酶、β-葡聚糖酶四种糖苷水解酶活性,在能源、饲料和食品等行业中具有很好的应用前景。
附图说明
图 1为纯化后的重组多功能糖苷水解酶GH5 SDS-PAGE图;
M:泳道1为标准蛋白分子量;泳道2为纯化后的多功能糖苷水解酶;
图2为重组多功能糖苷水解酶GH5的最适反应pH (以羧甲基纤维素钠和魔芋甘露聚糖为底物反应);
图3为重组多功能糖苷水解酶GH5的pH稳定性(以羧甲基纤维素钠和魔芋甘露聚糖为底物反应)。
图4为重组多功能糖苷水解酶GH5的最适反应温度(以羧甲基纤维素钠和魔芋甘露聚糖为底物反应);
图5为重组多功能糖苷水解酶GH5的温度稳定性(以羧甲基纤维素钠和魔芋甘露聚糖为底物反应)。
具体实施方式
为使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施方式,进一步阐述本发明。
实施例1
本实施说明C.bescii DSM 6725多功能糖苷水解酶编码基因的克隆。
根据基因序列设计以下引物GHF和GHR,以C.bescii DSM 6725总DNA为模板进行PCR。
引物GHF1:AATTTACCCAAAGTTGGTGCG
引物GHR1:TCATTTTGCGGCTGGAACTG
PCR反应在50 μl体系中进行,反应按如下条件进行:95°C 预变性5 min; 94°C变性30 s,50-60°C退火45 s,72°C延伸4 min30 s,30个循环;72°C终延伸10 min。
PCR产物进行琼脂糖凝胶电泳后割胶回收,与pMD-19 T载体连接后转化大肠杆菌E. coliJM109,在含氨苄抗性(100 mg/L)的LB平板上筛选阳性转化子。挑取阳性转化子接入LB液体培养基,37°C培养12~16 h,提取质粒,该质粒命名为pMD19T-GH,对该质粒进行序列测定。
实施例2
根据基因序列设计以下分别带有BamHI和XhoI酶切位点的引物GHF2和GHR2,以pMD19T-GH为模板进行PCR。
引物GHF2:CGCGGATCCAATTTACCCAAAGTTGGTGCG
引物GHR2:CCGCTCGACTCATTTTGCGGCTGGAACTG
PCR反应在50 μl体系中进行,反应按如下条件进行:95°C 预变性5min; 94°C变性30s,50-60°C退火45s,72°C延伸4min30s,30个循环;72°C终延伸10min。
PCR产物进行琼脂糖凝胶电泳后割胶回收。本研究所采用的表达质粒是pET-28a(+),将质粒pET-28a (+)和GH5的PCR产物分别进行双酶切后割胶回收,用T4连接酶在16 °C连接过夜,连接产物转化大肠杆菌E. coli JM109 感受态细胞,在含卡那霉素抗性(10 mg/L)的 LB平板培养过夜,筛选阳性转化子,进行富集培养后提取质粒,命名为pET28a(+)-GH5,对该质粒进行序列测定。
实施例3
本实施说明重组菌的筛选。
将重组质粒pET28a(+)-GH5在42 °C热击90 s转化宿主菌大肠杆菌E. coli Rosetta-gami (DE3)感受态细胞,在含卡那霉素(10 mg/L)和氯霉素(35 mg/L)抗性的LB平板培养过夜,筛选阳性转化子E. coli Rosetta-gami (DE3) /pET28a(+)-GH5,接入LB液体培养基中37 °C培养过夜,转接至新鲜的LB培养基中37 °C培养至OD600nm达0.6-0.8,添加终浓度0.5 mM的IPTG (异丙基硫代-β-D-半乳糖苷)在16°C下进行产酶诱导3-6 h,重组菌株表现出纤维素酶和甘露聚糖酶活性。
实施例4
将上述获得的含有多功能糖苷水解酶的重组菌发酵液于4°C,8000 rpm离心 10min,去除上清;离心收集的细胞悬浮于缓冲液A (50 mM Tris-HCl,pH7)中,制备成菌悬液;菌悬液在冰浴中用超声破碎仪破碎,200W功率下工作300次,每个循环工作2 s停9 s;细胞裂解液4 °C 下10, 000 rpm 离心30 min,所得上清液即为无细胞抽提液;取无细胞抽提液用0.45 μm滤膜过滤制备成上样样品,将Ni-NTA琼脂糖凝胶柱用缓冲液A冲洗至平衡,冲柱流速2 mL/min,而后对样品进行上柱,上柱流速1 mL/min,,待完全吸附后,分别用含缓冲液A~含500 mM咪唑的缓冲液A梯度洗脱,洗脱流速2 mL/min,分别收集各阶段洗脱峰,通过SDS-PAGE分析纯化后的多功能糖苷水解酶的分子量大小和纯度。图 1为纯化后的重组多功能糖苷水解酶GH5 SDS-PAGE图。
实施例5
1、多功能酶糖苷水解酶GH5的最适pH的测定方法及结果
将实施例4纯化的重组多功能糖苷水解酶在不同的pH下进行酶促反应以测定其最适pH;以0.5%的羧甲基纤维素钠/甘露聚糖为底物,取50μL底物并加入90μL相应的缓冲液;缓冲溶液的缓冲梯度不同: 100mM柠檬酸-Na2HP04 (pH 3.0-8.0)。底物与缓冲液的混合溶液加入10μL适当稀释的酶液,混匀并准确反应15min,加入150 μl的DNS煮沸5min,冷却至室温后测定OD540nm值。结果表明(图2),重组酶的纤维素酶反应最适pH为5,在pH4.5~6.5之间有70%以上的相对酶活性;甘露聚糖酶反应最适pH为6.5,在pH5.5~7.0之间有70%以上的相对酶活性。
2、多功能糖苷水解酶GH5的pH稳定性的测定方法及结果
将实施例4纯化的重组多功能糖苷水解酶在各种不同pH值的缓冲液中4°C处理24h,再于相应的pH 5、温度70°C条件下测定相对剩余酶活,以研究酶的pH稳定性。结果表明(图3),在pH4~7之间,两种酶活性都很稳定,相对酶活保持75%以上。
3、多功能糖苷水解酶GH5的最适温度测定方法及结果
将实施例4纯化的重组多功能糖苷水解酶在不同温度55-95°C下进行酶促反应。以0.5%的羧甲基纤维素钠/甘露聚糖为底物,取50μL底物并加入90μL相应的缓冲液。底物与缓冲液的混合溶液加入10μL适当稀释的酶液,混匀并准确反应15min,加入150 μl的DNS煮沸5min,冷却至室温后测定OD540nm值。酶反应最适温度测定结果如图4所示,重组酶的纤维素酶反应最适温度为70°C,在55~80°C之间有70%以上的相对酶活性;甘露聚糖酶最适温度为85°C,在75~90°C之间有75%以上的相对酶活性。
4、多功能糖苷水解酶GH5的热稳定性测定方法及结果
热稳定性测定为重组酶在不同温度下处理不同时间,再在相应酶的最适pH和温度下进行酶活性测定。酶的热稳定性试验表明(图5),多功能糖苷水解酶具有良好的热稳定性,在40-70°C保温6 h,多功能酶糖苷水解酶GH5甘露聚糖酶和纤维素酶酶活性仍达到100%;40°C保温48 h,双功能酶GH5保留了98%的甘露聚糖酶活性和79%的纤维素酶活性,70°C保温48 h,双功能酶GH5保留了的65%甘露聚糖酶活性和58%的纤维素酶活性。
5、多功能糖苷水解酶GH5对各种多糖的水解
测定多功能糖苷水解酶对各种多糖的水解能力,所用底物包括木聚糖、淀粉、木葡聚糖、羧甲基纤维素钠、β-葡聚糖、β-1,4甘露聚糖、魔芋甘露聚糖、瓜尔豆胶。配置0.5%的各种底物,取50 μL底物并加入90μL相应的缓冲液。底物与缓冲液的混合溶液加入10 μL适当稀释的酶液,混匀并在70°C反应15 min,加入150 μl的DNS煮沸5min,冷却至室温后测定OD540nm值。
酶活单位(U)定义为:在一定条件下,每分钟催化底物生成1μmol还原糖所需要的酶量为一个活性单位。
表1可以看出此多功能糖苷水解酶对木聚糖、羧甲基纤维素钠、β-葡聚糖、β-1,4-甘露聚糖、魔芋甘露聚糖、瓜尔多胶均具有水解作用,酶活见表1。结果表明,该多功能糖苷水解酶同时具有纤维素酶、甘露聚糖酶、木聚糖酶、β-葡聚糖酶四种糖苷水解酶活性,具有非常好的应用潜力。
表1 多功能糖苷水解酶GH5对多糖的水解活性
底物 酶活(U/μmol)
羧甲基纤维素钠 192.21±9.25
魔芋甘露聚糖 20178.37±68.33
瓜尔豆胶 19245.76±56.81
β-1,4-甘露聚糖 18674.42±55.32
木聚糖 38.69±2.47
β-葡聚糖 602.78±15.42
淀粉 0
木葡聚糖 0
以上显示和描述了本发明的基本原理和主要特征和本发明的优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。
序列表
<110> 淮阴工学院
<120> 一种耐热多功能糖苷水解酶及其编码基因和应用
<170> PatentIn version 3.3
<210> 1
<211> 4245
<212> DNA
<213> SEQ IDNO.1
atgagagtaa aaacaaaaat ggggaagaaa tggttgagta tactatgtac agttgttttt 60
ttattgaaca ttttgtttat agcaaatgta acgaatttac ccaaagttgg tgcggctaca 120
tctaatgatg gagtagtgaa gatagatact agcacattaa taggaacaaa tcacgcacat 180
tgctggtaca gagataaact tgagacggca ttgcgaggaa taaggtcatg gggtatgaac 240
tctgtgaggg tagtgttgag taatggctat cgatggacga agataccagc aagtgaagta 300
gcaaatatta tatcattgtc aagaagtctt ggattcagag ccattgtatt agaagttcac 360
gacacgacag gatatggtga ggacggtgca gcatgttcat tggcgcaagc agtagaatat 420
tggaaagaga taaagagtgt gttagaaggc aatgaggatt ttgttataat aaacattggt 480
aatgagccgt atgggaacaa taactatcaa aactggatta atgacacgaa gaatgctata 540
aaagcgctaa gggatgcagg gttcaagcac acgataatgg ttgatgcacc gaactggggg 600
caggattggt ctaatactat gagagacaat gcccagagca taatggaagc agatccgctg 660
cgcaatttgg tattttcgat tcatatgtac ggtgtataca atacagcgag caaggtagaa 720
gaatatatca agtcatttgt ggagaaaggg ctgccattag ttattgggga gtttgggcat 780
cagcatacag atggtgaccc tgacgaggaa gctattgtca ggtatgcaaa acaatacaag 840
ataggacttt ttagctggtc ttggtgtggc aattcgagct atgtagggta cttggacatg 900
gtaaacaatt gggaccccaa taatccaact ccatgggggc aatggtataa aactaatgcg 960
attggtgcct cttcagtacc tacttcaaca ccaacaccga caccaactgc tacaccaaca 1020
gcaacaccaa caccaacact gactccaaca ccgacaccta caccaacacc aacgtcaaca 1080
ccaactgcta caccaacagc aacgccaaca ccaacaccga cgccgagcag cacacctgta 1140
gcaggtggac agataaaggt attgtatgct aacaaggaga caaatagcac aacaaatacg 1200
ataaggccat ggttgaaggt agtgaacact ggaagcagca gcatagattt gagcagggta 1260
acgataaggt actggtacac ggtagatggg gacaaggcac agagtgcgat atcagactgg 1320
gcacagatag gagcaagcaa tgtgacattc aagtttgtga agctgagcag tagcgtaagt 1380
ggagcggact attatttaga gataggattt aagagtggag ctgggcagtt gcaggctggt 1440
aaagacacag gggagataca gataaggttt aacaagagtg actggagcaa ttacaatcag 1500
gggaatgact ggtcatggat gcagagcatg acgagttatg gagagaatgt gaaggtaaca 1560
gcgtatatag atggtgtatt ggtatgggga caggagccga gtggagcgac accaacaccg 1620
acagcaacac cagcaccaac accaaccccg accccaacac caactgctac accaacgcca 1680
acaccgactc caacaccaac accaactgct accccaacac cgacgccgag cagtacacct 1740
gtagcaggtg gacagataaa ggtattgtat gctaacaagg agacaaatag cacaacaaac 1800
acgataaggc catggttgaa ggtagtgaac actggaagca gcagcataga tttgagcagg 1860
gtaacgataa ggtactggta cacggtagat ggggacaagg cacagagtgc gatatcagac 1920
tgggcacaga taggagcaag caatgtgaca ttcaagtttg tgaagctgag cagtagcgta 1980
agtggagcgg actattattt agagatagga tttaagagtg gagctgggca gttgcaggct 2040
ggtaaagaca caggggagat acagataagg tttaacaaga gtgactggag caattacaat 2100
caggggaatg actggtcatg gatgcagagc atgacgagtt atggagagaa tgtgaaggta 2160
acagcgtata tagatggtgt attggtatgg ggacaggagc cgagtggagc gacaccaaca 2220
ccgacagcaa caccagcacc aacaccaacc ccgaccccaa caccaactgc tacaccaacg 2280
ccaacaccga ctccaacacc aacaccaact gctaccccaa caccgacgcc gagcagtaca 2340
cctgtagcag gtggacagat aaaggtattg tatgctaaca aggagacaaa tagcacaaca 2400
aacacgataa ggccatggtt gaaggtagtg aacactggaa gcagcagcat agatttgagc 2460
agggtaacga taaggtactg gtacacggta gatggggaca aggcacagag tgcgatatca 2520
gactgggcac agataggagc aagcaatgtg acattcaagt ttgtgaagct gagcagtagc 2580
gtaagtggag cggactatta tttagagata ggatttaaga gtggagctgg gcagttgcag 2640
gctggtaaag acacagggga gatacagata aggtttaaca agagtgactg gagcaattac 2700
aatcagggga atgactggtc atggatgcag agcatgacga gttatggaga gaatgtgaag 2760
gtaacagcgt atatagatgg tgtattggta tggggacagg agccgagtgg agcgacacca 2820
acaccgacag caacaccagc accgacagtg acaccgacag caacaccagc accaacacca 2880
accccgaccc caacagtaac ggcaaccccg acaccgacac caacaccggt gcagacagta 2940
ataccaatgc caacagtaac tccaaatcca acatcaacac cgagtattct tgatgataca 3000
aatgatgatt ggctttatgt aagtggtaat aaaatagttg ataaagatgg taaaccggta 3060
tggttaacag gtattaactg gtttggatac aatacaggta caaatgtttt tgatggtgta 3120
tggagttgca atctaaaaga tactctagct gaaatagcca atagaggctt taatttgcta 3180
agaattccaa tatcagccga gattatactg aactggtcgc aaggtattta tccaaaacca 3240
aatataaact actacgttaa tccagagctt gagggcaaaa acagtcttga agtatttgac 3300
atagttgtac aaatatgtaa agaagttggt ttgaaaatta tgttggatat tcacagcata 3360
aaaacagacg caatgggaca tatctatcca gtatggtatg atgataaatt tactccagag 3420
gatttttata aggcgtgtga gtggattaca aatagatata aaaatgatga tactattata 3480
gcttttgacc taaaaaatga gccacatgga aaaccatggc aagacacaac atttgcaaaa 3540
tgggataatt caacagatat taataattgg aaatatgcgg ctgaaacatg tgcgaaacgt 3600
atactaaata taaatccaaa ccttcttatt gtaatagaag gaattgaagc gtatccaaaa 3660
gatgacgtta catggacatc aaaatcctat agcgattact attcaacatg gtggggcggt 3720
aacttgcgag gtgttaaaaa gtatcctatt aatctgggta aatatcaaaa taaagtagta 3780
tattcacctc atgattacgg accctctgtt taccagcagc cgtggtttta tccaggcttc 3840
acaaaagaat ctttactaca agattgttgg cgtccgaatt gggcttacat catggaagaa 3900
aacattgcgc cgctgctgat aggtgaatgg ggtggttatc ttgatggagc tgataacgaa 3960
aagtggatga gatatctacg agattatatt atagagaatc atattcatca cacattttgg 4020
tgctttaatg ctaactcagg tgacactgga ggtatggttg gatacgattt tacgacatgg 4080
gatgaaaaaa aatactcatt tttaaagccg gctctttggc aagacagtca aggtaggttt 4140
gttggattag atcacaagcg acccttaggt acaaatggga aaaacattaa tattacaata 4200
tactacaaca ataatgaacc agcgccagtt ccagccgcaa aatga 4245
氨基酸序列SEQ IDNO.2:
<110> 淮阴工学院
<120> 一种耐热多功能糖苷水解酶及其编码基因和应用
<170> SIPOSequenceListing 1.0
<210> 1
<211> 1414
<212> PRT
Met Arg Val Lys Thr Lys Met Gly Lys Lys Trp Leu Ser Ile Leu Cys
1 5 10 15
Thr Val Val Phe Leu Leu Asn Ile Leu Phe Ile Ala Asn Val Thr Asn
20 25 30
Leu Pro Lys Val Gly Ala Ala Thr Ser Asn Asp Gly Val Val Lys Ile
35 40 45
Asp Thr Ser Thr Leu Ile Gly Thr Asn His Ala His Cys Trp Tyr Arg
50 55 60
Asp Lys Leu Glu Thr Ala Leu Arg Gly Ile Arg Ser Trp Gly Met Asn
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Ser Val Arg Val Val Leu Ser Asn Gly Tyr Arg Trp Thr Lys Ile Pro
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Ala Ser Glu Val Ala Asn Ile Ile Ser Leu Ser Arg Ser Leu Gly Phe
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Arg Ala Ile Val Leu Glu Val His Asp Thr Thr Gly Tyr Gly Glu Asp
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Gly Ala Ala Cys Ser Leu Ala Gln Ala Val Glu Tyr Trp Lys Glu Ile
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Lys Ser Val Leu Glu Gly Asn Glu Asp Phe Val Ile Ile Asn Ile Gly
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Asn Glu Pro Tyr Gly Asn Asn Asn Tyr Gln Asn Trp Ile Asn Asp Thr
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Lys Asn Ala Ile Lys Ala Leu Arg Asp Ala Gly Phe Lys His Thr Ile
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Met Val Asp Ala Pro Asn Trp Gly Gln Asp Trp Ser Asn Thr Met Arg
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Asp Asn Ala Gln Ser Ile Met Glu Ala Asp Pro Leu Arg Asn Leu Val
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Phe Ser Ile His Met Tyr Gly Val Tyr Asn Thr Ala Ser Lys Val Glu
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Glu Tyr Ile Lys Ser Phe Val Glu Lys Gly Leu Pro Leu Val Ile Gly
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Glu Phe Gly His Gln His Thr Asp Gly Asp Pro Asp Glu Glu Ala Ile
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Val Arg Tyr Ala Lys Gln Tyr Lys Ile Gly Leu Phe Ser Trp Ser Trp
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Cys Gly Asn Ser Ser Tyr Val Gly Tyr Leu Asp Met Val Asn Asn Trp
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Asp Pro Asn Asn Pro Thr Pro Trp Gly Gln Trp Tyr Lys Thr Asn Ala
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Ile Gly Ala Ser Ser Val Pro Thr Ser Thr Pro Thr Pro Thr Pro Thr
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Ala Thr Pro Thr Ala Thr Pro Thr Pro Thr Leu Thr Pro Thr Pro Thr
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Pro Thr Pro Thr Pro Thr Ser Thr Pro Thr Ala Thr Pro Thr Ala Thr
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Pro Thr Pro Thr Pro Thr Pro Ser Ser Thr Pro Val Ala Gly Gly Gln
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Ile Lys Val Leu Tyr Ala Asn Lys Glu Thr Asn Ser Thr Thr Asn Thr
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Ile Arg Pro Trp Leu Lys Val Val Asn Thr Gly Ser Ser Ser Ile Asp
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Ala Gln Ser Ala Ile Ser Asp Trp Ala Gln Ile Gly Ala Ser Asn Val
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Thr Phe Lys Phe Val Lys Leu Ser Ser Ser Val Ser Gly Ala Asp Tyr
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Tyr Leu Glu Ile Gly Phe Lys Ser Gly Ala Gly Gln Leu Gln Ala Gly
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Tyr Gly Glu Asn Val Lys Val Thr Ala Tyr Ile Asp Gly Val Leu Val
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Thr Pro Thr Pro Thr Pro Thr Pro Thr Ala Thr Pro Thr Pro Thr Pro
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Ser Ser Thr Pro Val Ala Gly Gly Gln Ile Lys Val Leu Tyr Ala Asn
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Lys Glu Thr Asn Ser Thr Thr Asn Thr Ile Arg Pro Trp Leu Lys Val
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Val Asn Thr Gly Ser Ser Ser Ile Asp Leu Ser Arg Val Thr Ile Arg
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Tyr Trp Tyr Thr Val Asp Gly Asp Lys Ala Gln Ser Ala Ile Ser Asp
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Trp Ala Gln Ile Gly Ala Ser Asn Val Thr Phe Lys Phe Val Lys Leu
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Ser Ser Ser Val Ser Gly Ala Asp Tyr Tyr Leu Glu Ile Gly Phe Lys
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Ser Gly Ala Gly Gln Leu Gln Ala Gly Lys Asp Thr Gly Glu Ile Gln
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Ile Arg Phe Asn Lys Ser Asp Trp Ser Asn Tyr Asn Gln Gly Asn Asp
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Trp Ser Trp Met Gln Ser Met Thr Ser Tyr Gly Glu Asn Val Lys Val
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Thr Ala Tyr Ile Asp Gly Val Leu Val Trp Gly Gln Glu Pro Ser Gly
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Ala Thr Pro Thr Pro Thr Ala Thr Pro Ala Pro Thr Pro Thr Pro Thr
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Pro Thr Pro Thr Ala Thr Pro Thr Pro Thr Pro Thr Pro Thr Pro Thr
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Pro Thr Ala Thr Pro Thr Pro Thr Pro Ser Ser Thr Pro Val Ala Gly
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Gly Gln Ile Lys Val Leu Tyr Ala Asn Lys Glu Thr Asn Ser Thr Thr
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Asn Thr Ile Arg Pro Trp Leu Lys Val Val Asn Thr Gly Ser Ser Ser
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Ile Asp Leu Ser Arg Val Thr Ile Arg Tyr Trp Tyr Thr Val Asp Gly
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Asp Lys Ala Gln Ser Ala Ile Ser Asp Trp Ala Gln Ile Gly Ala Ser
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Asn Val Thr Phe Lys Phe Val Lys Leu Ser Ser Ser Val Ser Gly Ala
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Asp Tyr Tyr Leu Glu Ile Gly Phe Lys Ser Gly Ala Gly Gln Leu Gln
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Ala Gly Lys Asp Thr Gly Glu Ile Gln Ile Arg Phe Asn Lys Ser Asp
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Trp Ser Asn Tyr Asn Gln Gly Asn Asp Trp Ser Trp Met Gln Ser Met
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Thr Ser Tyr Gly Glu Asn Val Lys Val Thr Ala Tyr Ile Asp Gly Val
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Leu Val Trp Gly Gln Glu Pro Ser Gly Ala Thr Pro Thr Pro Thr Ala
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Thr Pro Ala Pro Thr Val Thr Pro Thr Ala Thr Pro Ala Pro Thr Pro
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Thr Pro Thr Pro Thr Val Thr Ala Thr Pro Thr Pro Thr Pro Thr Pro
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Val Gln Thr Val Ile Pro Met Pro Thr Val Thr Pro Asn Pro Thr Ser
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Thr Pro Ser Ile Leu Asp Asp Thr Asn Asp Asp Trp Leu Tyr Val Ser
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Gly Asn Lys Ile Val Asp Lys Asp Gly Lys Pro Val Trp Leu Thr Gly
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Ile Asn Trp Phe Gly Tyr Asn Thr Gly Thr Asn Val Phe Asp Gly Val
1025 1030 1035 1040
Trp Ser Cys Asn Leu Lys Asp Thr Leu Ala Glu Ile Ala Asn Arg Gly
1045 1050 1055
Phe Asn Leu Leu Arg Ile Pro Ile Ser Ala Glu Ile Ile Leu Asn Trp
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Ser Gln Gly Ile Tyr Pro Lys Pro Asn Ile Asn Tyr Tyr Val Asn Pro
1075 1080 1085
Glu Leu Glu Gly Lys Asn Ser Leu Glu Val Phe Asp Ile Val Val Gln
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Ile Cys Lys Glu Val Gly Leu Lys Ile Met Leu Asp Ile His Ser Ile
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Lys Thr Asp Ala Met Gly His Ile Tyr Pro Val Trp Tyr Asp Asp Lys
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Phe Thr Pro Glu Asp Phe Tyr Lys Ala Cys Glu Trp Ile Thr Asn Arg
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Tyr Lys Asn Asp Asp Thr Ile Ile Ala Phe Asp Leu Lys Asn Glu Pro
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His Gly Lys Pro Trp Gln Asp Thr Thr Phe Ala Lys Trp Asp Asn Ser
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Thr Asp Ile Asn Asn Trp Lys Tyr Ala Ala Glu Thr Cys Ala Lys Arg
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Ile Leu Asn Ile Asn Pro Asn Leu Leu Ile Val Ile Glu Gly Ile Glu
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Ala Tyr Pro Lys Asp Asp Val Thr Trp Thr Ser Lys Ser Tyr Ser Asp
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Tyr Tyr Ser Thr Trp Trp Gly Gly Asn Leu Arg Gly Val Lys Lys Tyr
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Pro Ile Asn Leu Gly Lys Tyr Gln Asn Lys Val Val Tyr Ser Pro His
1250 1255 1260
Asp Tyr Gly Pro Ser Val Tyr Gln Gln Pro Trp Phe Tyr Pro Gly Phe
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Thr Lys Glu Ser Leu Leu Gln Asp Cys Trp Arg Pro Asn Trp Ala Tyr
1285 1290 1295
Ile Met Glu Glu Asn Ile Ala Pro Leu Leu Ile Gly Glu Trp Gly Gly
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Tyr Leu Asp Gly Ala Asp Asn Glu Lys Trp Met Arg Tyr Leu Arg Asp
1315 1320 1325
Tyr Ile Ile Glu Asn His Ile His His Thr Phe Trp Cys Phe Asn Ala
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Asn Ser Gly Asp Thr Gly Gly Met Val Gly Tyr Asp Phe Thr Thr Trp
1345 1350 1355 1360
Asp Glu Lys Lys Tyr Ser Phe Leu Lys Pro Ala Leu Trp Gln Asp Ser
1365 1370 1375
Gln Gly Arg Phe Val Gly Leu Asp His Lys Arg Pro Leu Gly Thr Asn
1380 1385 1390
Gly Lys Asn Ile Asn Ile Thr Ile Tyr Tyr Asn Asn Asn Glu Pro Ala
1395 1400 1405
Pro Val Pro Ala Ala Lys
1410
序列表
<110> 淮阴工学院
<120> 一种耐热多功能糖苷水解酶及其编码基因和应用
<140> 2020116112708
<141> 2020-12-20
<160> 1
<170> SIPOSequenceListing 1.0
<210> 1
<212> DNA
<213> 序列1(2 Ambystoma laterale x Ambystoma jeffersonianum)
<400> 1
atgagagtaa aaacaaaaat ggggaagaaa tggttgagta tactatgtac agttgttttt 60
ttattgaaca ttttgtttat agcaaatgta acgaatttac ccaaagttgg tgcggctaca 120
tctaatgatg gagtagtgaa gatagatact agcacattaa taggaacaaa tcacgcacat 180
tgctggtaca gagataaact tgagacggca ttgcgaggaa taaggtcatg gggtatgaac 240
tctgtgaggg tagtgttgag taatggctat cgatggacga agataccagc aagtgaagta 300
gcaaatatta tatcattgtc aagaagtctt ggattcagag ccattgtatt agaagttcac 360
gacacgacag gatatggtga ggacggtgca gcatgttcat tggcgcaagc agtagaatat 420
tggaaagaga taaagagtgt gttagaaggc aatgaggatt ttgttataat aaacattggt 480
aatgagccgt atgggaacaa taactatcaa aactggatta atgacacgaa gaatgctata 540
aaagcgctaa gggatgcagg gttcaagcac acgataatgg ttgatgcacc gaactggggg 600
caggattggt ctaatactat gagagacaat gcccagagca taatggaagc agatccgctg 660
cgcaatttgg tattttcgat tcatatgtac ggtgtataca atacagcgag caaggtagaa 720
gaatatatca agtcatttgt ggagaaaggg ctgccattag ttattgggga gtttgggcat 780
cagcatacag atggtgaccc tgacgaggaa gctattgtca ggtatgcaaa acaatacaag 840
ataggacttt ttagctggtc ttggtgtggc aattcgagct atgtagggta cttggacatg 900
gtaaacaatt gggaccccaa taatccaact ccatgggggc aatggtataa aactaatgcg 960
attggtgcct cttcagtacc tacttcaaca ccaacaccga caccaactgc tacaccaaca 1020
gcaacaccaa caccaacact gactccaaca ccgacaccta caccaacacc aacgtcaaca 1080
ccaactgcta caccaacagc aacgccaaca ccaacaccga cgccgagcag cacacctgta 1140
gcaggtggac agataaaggt attgtatgct aacaaggaga caaatagcac aacaaatacg 1200
ataaggccat ggttgaaggt agtgaacact ggaagcagca gcatagattt gagcagggta 1260
acgataaggt actggtacac ggtagatggg gacaaggcac agagtgcgat atcagactgg 1320
gcacagatag gagcaagcaa tgtgacattc aagtttgtga agctgagcag tagcgtaagt 1380
ggagcggact attatttaga gataggattt aagagtggag ctgggcagtt gcaggctggt 1440
aaagacacag gggagataca gataaggttt aacaagagtg actggagcaa ttacaatcag 1500
gggaatgact ggtcatggat gcagagcatg acgagttatg gagagaatgt gaaggtaaca 1560
gcgtatatag atggtgtatt ggtatgggga caggagccga gtggagcgac accaacaccg 1620
acagcaacac cagcaccaac accaaccccg accccaacac caactgctac accaacgcca 1680
acaccgactc caacaccaac accaactgct accccaacac cgacgccgag cagtacacct 1740
gtagcaggtg gacagataaa ggtattgtat gctaacaagg agacaaatag cacaacaaac 1800
acgataaggc catggttgaa ggtagtgaac actggaagca gcagcataga tttgagcagg 1860
gtaacgataa ggtactggta cacggtagat ggggacaagg cacagagtgc gatatcagac 1920
tgggcacaga taggagcaag caatgtgaca ttcaagtttg tgaagctgag cagtagcgta 1980
agtggagcgg actattattt agagatagga tttaagagtg gagctgggca gttgcaggct 2040
ggtaaagaca caggggagat acagataagg tttaacaaga gtgactggag caattacaat 2100
caggggaatg actggtcatg gatgcagagc atgacgagtt atggagagaa tgtgaaggta 2160
acagcgtata tagatggtgt attggtatgg ggacaggagc cgagtggagc gacaccaaca 2220
ccgacagcaa caccagcacc aacaccaacc ccgaccccaa caccaactgc tacaccaacg 2280
ccaacaccga ctccaacacc aacaccaact gctaccccaa caccgacgcc gagcagtaca 2340
cctgtagcag gtggacagat aaaggtattg tatgctaaca aggagacaaa tagcacaaca 2400
aacacgataa ggccatggtt gaaggtagtg aacactggaa gcagcagcat agatttgagc 2460
agggtaacga taaggtactg gtacacggta gatggggaca aggcacagag tgcgatatca 2520
gactgggcac agataggagc aagcaatgtg acattcaagt ttgtgaagct gagcagtagc 2580
gtaagtggag cggactatta tttagagata ggatttaaga gtggagctgg gcagttgcag 2640
gctggtaaag acacagggga gatacagata aggtttaaca agagtgactg gagcaattac 2700
aatcagggga atgactggtc atggatgcag agcatgacga gttatggaga gaatgtgaag 2760
gtaacagcgt atatagatgg tgtattggta tggggacagg agccgagtgg agcgacacca 2820
acaccgacag caacaccagc accgacagtg acaccgacag caacaccagc accaacacca 2880
accccgaccc caacagtaac ggcaaccccg acaccgacac caacaccggt gcagacagta 2940
ataccaatgc caacagtaac tccaaatcca acatcaacac cgagtattct tgatgataca 3000
aatgatgatt ggctttatgt aagtggtaat aaaatagttg ataaagatgg taaaccggta 3060
tggttaacag gtattaactg gtttggatac aatacaggta caaatgtttt tgatggtgta 3120
tggagttgca atctaaaaga tactctagct gaaatagcca atagaggctt taatttgcta 3180
agaattccaa tatcagccga gattatactg aactggtcgc aaggtattta tccaaaacca 3240
aatataaact actacgttaa tccagagctt gagggcaaaa acagtcttga agtatttgac 3300
atagttgtac aaatatgtaa agaagttggt ttgaaaatta tgttggatat tcacagcata 3360
aaaacagacg caatgggaca tatctatcca gtatggtatg atgataaatt tactccagag 3420
gatttttata aggcgtgtga gtggattaca aatagatata aaaatgatga tactattata 3480
gcttttgacc taaaaaatga gccacatgga aaaccatggc aagacacaac atttgcaaaa 3540
tgggataatt caacagatat taataattgg aaatatgcgg ctgaaacatg tgcgaaacgt 3600
atactaaata taaatccaaa ccttcttatt gtaatagaag gaattgaagc gtatccaaaa 3660
gatgacgtta catggacatc aaaatcctat agcgattact attcaacatg gtggggcggt 3720
aacttgcgag gtgttaaaaa gtatcctatt aatctgggta aatatcaaaa taaagtagta 3780
tattcacctc atgattacgg accctctgtt taccagcagc cgtggtttta tccaggcttc 3840
acaaaagaat ctttactaca agattgttgg cgtccgaatt gggcttacat catggaagaa 3900
aacattgcgc cgctgctgat aggtgaatgg ggtggttatc ttgatggagc tgataacgaa 3960
aagtggatga gatatctacg agattatatt atagagaatc atattcatca cacattttgg 4020
tgctttaatg ctaactcagg tgacactgga ggtatggttg gatacgattt tacgacatgg 4080
gatgaaaaaa aatactcatt tttaaagccg gctctttggc aagacagtca aggtaggttt 4140
gttggattag atcacaagcg acccttaggt acaaatggga aaaacattaa tattacaata 4200
tactacaaca ataatgaacc agcgccagtt ccagccgcaa aatga 4245
序列表
<110> 淮阴工学院
<120> 一种耐热多功能糖苷水解酶及其编码基因和应用
<160> 1
<170> SIPOSequenceListing 1.0
<210> 1
<212> PRT
<213> 序列2(2 Ambystoma laterale x Ambystoma jeffersonianum)
<400> 1
Met Arg Val Lys Thr Lys Met Gly Lys Lys Trp Leu Ser Ile Leu Cys
1 5 10 15
Thr Val Val Phe Leu Leu Asn Ile Leu Phe Ile Ala Asn Val Thr Asn
20 25 30
Leu Pro Lys Val Gly Ala Ala Thr Ser Asn Asp Gly Val Val Lys Ile
35 40 45
Asp Thr Ser Thr Leu Ile Gly Thr Asn His Ala His Cys Trp Tyr Arg
50 55 60
Asp Lys Leu Glu Thr Ala Leu Arg Gly Ile Arg Ser Trp Gly Met Asn
65 70 75 80
Ser Val Arg Val Val Leu Ser Asn Gly Tyr Arg Trp Thr Lys Ile Pro
85 90 95
Ala Ser Glu Val Ala Asn Ile Ile Ser Leu Ser Arg Ser Leu Gly Phe
100 105 110
Arg Ala Ile Val Leu Glu Val His Asp Thr Thr Gly Tyr Gly Glu Asp
115 120 125
Gly Ala Ala Cys Ser Leu Ala Gln Ala Val Glu Tyr Trp Lys Glu Ile
130 135 140
Lys Ser Val Leu Glu Gly Asn Glu Asp Phe Val Ile Ile Asn Ile Gly
145 150 155 160
Asn Glu Pro Tyr Gly Asn Asn Asn Tyr Gln Asn Trp Ile Asn Asp Thr
165 170 175
Lys Asn Ala Ile Lys Ala Leu Arg Asp Ala Gly Phe Lys His Thr Ile
180 185 190
Met Val Asp Ala Pro Asn Trp Gly Gln Asp Trp Ser Asn Thr Met Arg
195 200 205
Asp Asn Ala Gln Ser Ile Met Glu Ala Asp Pro Leu Arg Asn Leu Val
210 215 220
Phe Ser Ile His Met Tyr Gly Val Tyr Asn Thr Ala Ser Lys Val Glu
225 230 235 240
Glu Tyr Ile Lys Ser Phe Val Glu Lys Gly Leu Pro Leu Val Ile Gly
245 250 255
Glu Phe Gly His Gln His Thr Asp Gly Asp Pro Asp Glu Glu Ala Ile
260 265 270
Val Arg Tyr Ala Lys Gln Tyr Lys Ile Gly Leu Phe Ser Trp Ser Trp
275 280 285
Cys Gly Asn Ser Ser Tyr Val Gly Tyr Leu Asp Met Val Asn Asn Trp
290 295 300
Asp Pro Asn Asn Pro Thr Pro Trp Gly Gln Trp Tyr Lys Thr Asn Ala
305 310 315 320
Ile Gly Ala Ser Ser Val Pro Thr Ser Thr Pro Thr Pro Thr Pro Thr
325 330 335
Ala Thr Pro Thr Ala Thr Pro Thr Pro Thr Leu Thr Pro Thr Pro Thr
340 345 350
Pro Thr Pro Thr Pro Thr Ser Thr Pro Thr Ala Thr Pro Thr Ala Thr
355 360 365
Pro Thr Pro Thr Pro Thr Pro Ser Ser Thr Pro Val Ala Gly Gly Gln
370 375 380
Ile Lys Val Leu Tyr Ala Asn Lys Glu Thr Asn Ser Thr Thr Asn Thr
385 390 395 400
Ile Arg Pro Trp Leu Lys Val Val Asn Thr Gly Ser Ser Ser Ile Asp
405 410 415
Leu Ser Arg Val Thr Ile Arg Tyr Trp Tyr Thr Val Asp Gly Asp Lys
420 425 430
Ala Gln Ser Ala Ile Ser Asp Trp Ala Gln Ile Gly Ala Ser Asn Val
435 440 445
Thr Phe Lys Phe Val Lys Leu Ser Ser Ser Val Ser Gly Ala Asp Tyr
450 455 460
Tyr Leu Glu Ile Gly Phe Lys Ser Gly Ala Gly Gln Leu Gln Ala Gly
465 470 475 480
Lys Asp Thr Gly Glu Ile Gln Ile Arg Phe Asn Lys Ser Asp Trp Ser
485 490 495
Asn Tyr Asn Gln Gly Asn Asp Trp Ser Trp Met Gln Ser Met Thr Ser
500 505 510
Tyr Gly Glu Asn Val Lys Val Thr Ala Tyr Ile Asp Gly Val Leu Val
515 520 525
Trp Gly Gln Glu Pro Ser Gly Ala Thr Pro Thr Pro Thr Ala Thr Pro
530 535 540
Ala Pro Thr Pro Thr Pro Thr Pro Thr Pro Thr Ala Thr Pro Thr Pro
545 550 555 560
Thr Pro Thr Pro Thr Pro Thr Pro Thr Ala Thr Pro Thr Pro Thr Pro
565 570 575
Ser Ser Thr Pro Val Ala Gly Gly Gln Ile Lys Val Leu Tyr Ala Asn
580 585 590
Lys Glu Thr Asn Ser Thr Thr Asn Thr Ile Arg Pro Trp Leu Lys Val
595 600 605
Val Asn Thr Gly Ser Ser Ser Ile Asp Leu Ser Arg Val Thr Ile Arg
610 615 620
Tyr Trp Tyr Thr Val Asp Gly Asp Lys Ala Gln Ser Ala Ile Ser Asp
625 630 635 640
Trp Ala Gln Ile Gly Ala Ser Asn Val Thr Phe Lys Phe Val Lys Leu
645 650 655
Ser Ser Ser Val Ser Gly Ala Asp Tyr Tyr Leu Glu Ile Gly Phe Lys
660 665 670
Ser Gly Ala Gly Gln Leu Gln Ala Gly Lys Asp Thr Gly Glu Ile Gln
675 680 685
Ile Arg Phe Asn Lys Ser Asp Trp Ser Asn Tyr Asn Gln Gly Asn Asp
690 695 700
Trp Ser Trp Met Gln Ser Met Thr Ser Tyr Gly Glu Asn Val Lys Val
705 710 715 720
Thr Ala Tyr Ile Asp Gly Val Leu Val Trp Gly Gln Glu Pro Ser Gly
725 730 735
Ala Thr Pro Thr Pro Thr Ala Thr Pro Ala Pro Thr Pro Thr Pro Thr
740 745 750
Pro Thr Pro Thr Ala Thr Pro Thr Pro Thr Pro Thr Pro Thr Pro Thr
755 760 765
Pro Thr Ala Thr Pro Thr Pro Thr Pro Ser Ser Thr Pro Val Ala Gly
770 775 780
Gly Gln Ile Lys Val Leu Tyr Ala Asn Lys Glu Thr Asn Ser Thr Thr
785 790 795 800
Asn Thr Ile Arg Pro Trp Leu Lys Val Val Asn Thr Gly Ser Ser Ser
805 810 815
Ile Asp Leu Ser Arg Val Thr Ile Arg Tyr Trp Tyr Thr Val Asp Gly
820 825 830
Asp Lys Ala Gln Ser Ala Ile Ser Asp Trp Ala Gln Ile Gly Ala Ser
835 840 845
Asn Val Thr Phe Lys Phe Val Lys Leu Ser Ser Ser Val Ser Gly Ala
850 855 860
Asp Tyr Tyr Leu Glu Ile Gly Phe Lys Ser Gly Ala Gly Gln Leu Gln
865 870 875 880
Ala Gly Lys Asp Thr Gly Glu Ile Gln Ile Arg Phe Asn Lys Ser Asp
885 890 895
Trp Ser Asn Tyr Asn Gln Gly Asn Asp Trp Ser Trp Met Gln Ser Met
900 905 910
Thr Ser Tyr Gly Glu Asn Val Lys Val Thr Ala Tyr Ile Asp Gly Val
915 920 925
Leu Val Trp Gly Gln Glu Pro Ser Gly Ala Thr Pro Thr Pro Thr Ala
930 935 940
Thr Pro Ala Pro Thr Val Thr Pro Thr Ala Thr Pro Ala Pro Thr Pro
945 950 955 960
Thr Pro Thr Pro Thr Val Thr Ala Thr Pro Thr Pro Thr Pro Thr Pro
965 970 975
Val Gln Thr Val Ile Pro Met Pro Thr Val Thr Pro Asn Pro Thr Ser
980 985 990
Thr Pro Ser Ile Leu Asp Asp Thr Asn Asp Asp Trp Leu Tyr Val Ser
995 1000 1005
Gly Asn Lys Ile Val Asp Lys Asp Gly Lys Pro Val Trp Leu Thr Gly
1010 1015 1020
Ile Asn Trp Phe Gly Tyr Asn Thr Gly Thr Asn Val Phe Asp Gly Val
1025 1030 1035 1040
Trp Ser Cys Asn Leu Lys Asp Thr Leu Ala Glu Ile Ala Asn Arg Gly
1045 1050 1055
Phe Asn Leu Leu Arg Ile Pro Ile Ser Ala Glu Ile Ile Leu Asn Trp
1060 1065 1070
Ser Gln Gly Ile Tyr Pro Lys Pro Asn Ile Asn Tyr Tyr Val Asn Pro
1075 1080 1085
Glu Leu Glu Gly Lys Asn Ser Leu Glu Val Phe Asp Ile Val Val Gln
1090 1095 1100
Ile Cys Lys Glu Val Gly Leu Lys Ile Met Leu Asp Ile His Ser Ile
1105 1110 1115 1120
Lys Thr Asp Ala Met Gly His Ile Tyr Pro Val Trp Tyr Asp Asp Lys
1125 1130 1135
Phe Thr Pro Glu Asp Phe Tyr Lys Ala Cys Glu Trp Ile Thr Asn Arg
1140 1145 1150
Tyr Lys Asn Asp Asp Thr Ile Ile Ala Phe Asp Leu Lys Asn Glu Pro
1155 1160 1165
His Gly Lys Pro Trp Gln Asp Thr Thr Phe Ala Lys Trp Asp Asn Ser
1170 1175 1180
Thr Asp Ile Asn Asn Trp Lys Tyr Ala Ala Glu Thr Cys Ala Lys Arg
1185 1190 1195 1200
Ile Leu Asn Ile Asn Pro Asn Leu Leu Ile Val Ile Glu Gly Ile Glu
1205 1210 1215
Ala Tyr Pro Lys Asp Asp Val Thr Trp Thr Ser Lys Ser Tyr Ser Asp
1220 1225 1230
Tyr Tyr Ser Thr Trp Trp Gly Gly Asn Leu Arg Gly Val Lys Lys Tyr
1235 1240 1245
Pro Ile Asn Leu Gly Lys Tyr Gln Asn Lys Val Val Tyr Ser Pro His
1250 1255 1260
Asp Tyr Gly Pro Ser Val Tyr Gln Gln Pro Trp Phe Tyr Pro Gly Phe
1265 1270 1275 1280
Thr Lys Glu Ser Leu Leu Gln Asp Cys Trp Arg Pro Asn Trp Ala Tyr
1285 1290 1295
Ile Met Glu Glu Asn Ile Ala Pro Leu Leu Ile Gly Glu Trp Gly Gly
1300 1305 1310
Tyr Leu Asp Gly Ala Asp Asn Glu Lys Trp Met Arg Tyr Leu Arg Asp
1315 1320 1325
Tyr Ile Ile Glu Asn His Ile His His Thr Phe Trp Cys Phe Asn Ala
1330 1335 1340
Asn Ser Gly Asp Thr Gly Gly Met Val Gly Tyr Asp Phe Thr Thr Trp
1345 1350 1355 1360
Asp Glu Lys Lys Tyr Ser Phe Leu Lys Pro Ala Leu Trp Gln Asp Ser
1365 1370 1375
Gln Gly Arg Phe Val Gly Leu Asp His Lys Arg Pro Leu Gly Thr Asn
1380 1385 1390
Gly Lys Asn Ile Asn Ile Thr Ile Tyr Tyr Asn Asn Asn Glu Pro Ala
1395 1400 1405
Pro Val Pro Ala Ala Lys
1410

Claims (7)

1.一种耐热多功能糖苷水解酶GH5基因,其特征在于,为序列表中的SEQID NO.1所示的核苷酸序列。
2.根据权利要求1所述的一种耐热多功能糖苷水解酶GH5基因,其特征在于,为序列表中的SEQID NO.2所示的氨基酸序列。
3.含有权利要求1所述的耐热多功能糖苷水解酶基因的重组表达质粒。
4.通过将权利要求3所述的重组表达质粒转化宿主细胞而获得的重组菌。
5.根据权利要求4所述的重组菌,其特征在于,所述宿主细胞为大肠杆菌。
6.一种多功能糖苷水解酶的制备方法,其特征在于,包括培养权利要求5所述的重组菌,通过诱导蛋白表达、纯化从而获得重组多功能糖苷水解酶GH5的步骤。
7.一种如权利要求6所述的多功能糖苷水解酶GH5在多糖水解中的的应用。
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CN113881653A (zh) * 2021-10-22 2022-01-04 中国农业科学院作物科学研究所 苦荞糖苷水解酶及其编码基因和应用
CN114107257A (zh) * 2021-11-24 2022-03-01 广东省科学院微生物研究所(广东省微生物分析检测中心) 一种糖苷水解酶及其应用
CN114196609A (zh) * 2021-12-31 2022-03-18 淮阴工学院 从乳酸合成纯聚乳酸的大肠杆菌工程菌及其制备方法和应用

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GENBANK: CP001393.1: "Caldicellulosiruptor bescii DSM 6725, complete genome", 《GENBANK》 *

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113881653A (zh) * 2021-10-22 2022-01-04 中国农业科学院作物科学研究所 苦荞糖苷水解酶及其编码基因和应用
CN113881653B (zh) * 2021-10-22 2023-06-09 中国农业科学院作物科学研究所 苦荞糖苷水解酶及其编码基因和应用
CN114107257A (zh) * 2021-11-24 2022-03-01 广东省科学院微生物研究所(广东省微生物分析检测中心) 一种糖苷水解酶及其应用
CN114107257B (zh) * 2021-11-24 2023-08-08 广东省科学院微生物研究所(广东省微生物分析检测中心) 一种糖苷水解酶及其应用
CN114196609A (zh) * 2021-12-31 2022-03-18 淮阴工学院 从乳酸合成纯聚乳酸的大肠杆菌工程菌及其制备方法和应用

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