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A Molecular Modeling Study of the Catalytic Mechanism of Haloalkane Dehalogenase: 1. Quantum Chemical Study of the First Reaction Step

机译:卤代烷脱卤酶催化机理的分子模型研究:1.第一步反应的量子化学研究

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摘要

The haloalkane dehalogenase of soil bacteria Xanthobacter autotrophicus is an enzyme, which catalyzes the environmentally important detoxification process, namely-the hydrolytic cleavage of the carbon-halogen bond. A molecular modeling study has been conducted with the structures of the wild-type enzyme and its mutants in order to investigate the mechanisms of the dehalogenation reaction at molecular level. Semiempirical quantum chemical calculations have been applied to elucidate the importance of the active site residues for kinetic and thermodynamic characteristics in the first step of dehalogenation reaction. The results obtained from these calculations have been compared with previously published experimental results. The strength of the application of molecular modeling method for the study of the evolutionary aspects of biodegradation of organic pollutants is discussed.
机译:土壤细菌自生黄杆菌的卤代烷脱卤酶是一种酶,它催化环境上重要的解毒过程,即碳-卤素键的水解裂解。为了研究脱氢反应在分子水平上的机理,已经对野生型酶及其突变体的结构进行了分子建模研究。半经验量子化学计算已用于阐明脱卤反应第一步中活性位点残基对动力学和热力学特征的重要性。从这些计算中获得的结果已与以前发表的实验结果进行了比较。讨论了分子建模方法在研究有机污染物生物降解的演变方面的优势。

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