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嗜热栖热菌 RKU-10 来源的β-葡萄糖苷酶用于半乳糖三糖的专一性合成:反应机制的动力学和热力学研究。

β-Glucosidase from Thermotoga naphthophila RKU-10 for exclusive synthesis of galactotrisaccharides: Kinetics and thermodynamics insight into reaction mechanism.

机构信息

Key Laboratory for Molecular Enzymology and Engineering, The Ministry of Education, School of Life Science, Jilin University, Changchun 130012, China; Department of Engineering, Aarhus University, Gustav Wieds Vej 10, Aarhus 8000, Denmark.

Key Laboratory for Molecular Enzymology and Engineering, The Ministry of Education, School of Life Science, Jilin University, Changchun 130012, China.

出版信息

Food Chem. 2018 Feb 1;240:422-429. doi: 10.1016/j.foodchem.2017.07.155. Epub 2017 Jul 29.

Abstract

This work reports a novel thermophilic β-glucosidase (TN0602) from Thermotoga naphthophila RKU-10, demonstrating exceptionally high catalytic selectivity (100%) for the exclusive synthesis of prebiotic galactotrisaccharides (GOS3) in a high volumetric production yield of 23.28gLh (higher than the highest value ever reported) at pH 6.5 and 75°C, with milk processing waste lactose as both the galactosyl donor and acceptor. A comparative study with commercial β-galactosidase from Aspergillus oryzae (AO) with respect to reaction kinetics, enzyme-substrate thermodynamic binding (substrate induced fluorescence quenching) and molecular docking simulation studies showed that β-glucosidase TN0602 has a deep catalytic "pocket" with a narrow entrance that prevents simultaneous access of lactose and GOS3 to the catalytic site, explaining its distinct catalytic specificity and reaction kinetics. The findings revealed in this work offer an improved understanding of how enzyme protein structure determines catalytic specificity, which serves as new knowledge to engineer β-glucosidase for the biosynthesis of designer GOS.

摘要

本工作报道了一种新型嗜热β-葡萄糖苷酶(TN0602),来源于Thermotoga naphthophila RKU-10,在 pH6.5 和 75°C 下,以乳加工废物乳糖为半乳糖供体和受体,对前体低聚半乳糖(GOS3)的合成具有极高的催化选择性(100%),在 23.28gLh 的高体积生产产率下,该酶的催化选择性(100%)极高(高于以往报道的最高值)。与来源于米曲霉(Aspergillus oryzae)的商业β-半乳糖苷酶(AO)进行比较研究,在反应动力学、酶-底物热力学结合(底物诱导荧光猝灭)和分子对接模拟研究方面,TN0602 具有深的催化“口袋”和狭窄的入口,可防止乳糖和 GOS3 同时进入催化位点,这解释了其独特的催化特异性和反应动力学。本工作中的发现揭示了酶蛋白结构如何决定催化特异性的机制,为设计 GOS 的生物合成工程β-葡萄糖苷酶提供了新知识。

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