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一株高产葡萄糖耐受纤维素酶的美丽薄孔菌(MpBg3)及其在纤维素糖化中的应用

A Highly Glucose Tolerant ß-Glucosidase from Malbranchea pulchella (MpBg3) Enables Cellulose Saccharification.

机构信息

Faculdade de Medicina de Ribeirão Preto. Universidade de São Paulo. Bandeirantes Av., 3.900, 14049-900, Ribeirão Preto, SP, Brazil.

Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto. Universidade de São Paulo. Bandeirantes Av., 3.900, 14040-901, Ribeirão Preto, SP, Brazil.

出版信息

Sci Rep. 2020 Apr 24;10(1):6998. doi: 10.1038/s41598-020-63972-y.

Abstract

β-glucosidases catalyze the hydrolysis β-1,4, β-1,3 and β-1,6 glucosidic linkages from non-reducing end of short chain oligosaccharides, alkyl and aryl β-D-glucosides and disaccharides. They catalyze the rate-limiting reaction in the conversion of cellobiose to glucose in the saccharification of cellulose for second-generation ethanol production, and due to this important role the search for glucose tolerant enzymes is of biochemical and biotechnological importance. In this study we characterize a family 3 glycosyl hydrolase (GH3) β-glucosidase (Bgl) produced by Malbranchea pulchella (MpBgl3) grown on cellobiose as the sole carbon source. Kinetic characterization revealed that the MpBgl3 was highly tolerant to glucose, which is in contrast to many Bgls that are completely inhibited by glucose. A 3D model of MpBgl3 was generated by molecular modeling and used for the evaluation of structural differences with a Bgl3 that is inhibited by glucose. Taken together, our results provide new clues to understand the glucose tolerance in GH3 β-glucosidases.

摘要

β-葡萄糖苷酶催化从短链寡糖、烷基和芳基β-D-葡萄糖苷以及二糖的非还原端水解β-1,4、β-1,3 和β-1,6 糖苷键。它们催化纤维素糖化过程中二糖转化为葡萄糖的限速反应,用于第二代乙醇生产,由于这种重要作用,寻找葡萄糖耐受酶具有生化和生物技术重要性。在这项研究中,我们对 Malbranchea pulchella(MpBgl3)产生的家族 3 糖苷水解酶(GH3)β-葡萄糖苷酶(Bgl)进行了表征,该酶在纤维二糖上生长作为唯一的碳源。动力学表征表明,MpBgl3 对葡萄糖具有高度耐受性,这与许多被葡萄糖完全抑制的 Bgl 形成对比。通过分子建模生成了 MpBgl3 的 3D 模型,并用于评估与被葡萄糖抑制的 Bgl3 的结构差异。总之,我们的结果为理解 GH3 β-葡萄糖苷酶的葡萄糖耐受性提供了新的线索。

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