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Molecular Docking Study of Beta-Glucosidase with Cellobiose Cellotetraose and Cellotetriose

机译:β-葡萄糖苷酶与纤维二糖纤维四糖和纤维三糖的分子对接研究

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摘要

Beta-glucosidase (3.2.1.21) plays an essential role in the removal of non-reducing terminal glucosyl residues from glycosides. Recently, beta-glucosidase has been of interest for biomass conversion that acts in synergy with two other enzymes, endoglucanase and exo-glucanase. However, there is not much information available on the catalytic interactions of beta-glucosidase with its substrates. Thus, this study reports on the binding modes between beta-glucosidase from glycoside hydrolase family 1 namely BglB with cellobiose, cellotetraose and cellotetriose via molecular docking simulation. From the results, the binding affinities of BglB-cellobiose, BglB-cellotetraose, and BglB-cellotetriose complexes were reported to be -6.2kJ/mol , -5.68 kJ/mol and -5.63 kJ/mol, respectively. The detail interactions were also been investigated that revealed the key residues involved in forming hydrogen bonds (h-bond) with the substrates. These findings may provide valuable insigths in designing beta-glucosidase with higher cellobiose-hydrolyzing efficiency.
机译:β-葡糖苷酶(3.2.1.21)在从糖苷中去除非还原性末端葡糖基残基方面起着至关重要的作用。最近,β-葡萄糖苷酶已引起生物质转化的兴趣,该生物质转化与其他两种酶(内切葡聚糖酶和外切葡聚糖酶)协同作用。然而,关于β-葡糖苷酶与其底物的催化相互作用的信息不多。因此,该研究通过分子对接模拟报道了糖苷水解酶家族1的β-葡糖苷酶即BglB与纤维二糖,纤维四糖和纤维三糖之间的结合方式。从该结果,据报道BglB-纤维二糖,BglB-纤维四糖和BglB-纤维三糖复合物的结合亲和力分别为-6.2kJ / mol,-5.68kJ / mol和-5.63kJ / mol。还研究了详细的相互作用,揭示了与底物形成氢键(h键)的关键残基。这些发现可能为设计具有更高纤维二糖水解效率的β-葡萄糖苷酶提供有价值的依据。

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