首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Can Alkaline Hydrolysis of γ-HCH Serve as a Model Reaction to Study Its Aerobic Enzymatic Dehydrochlorination by LinA?
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Can Alkaline Hydrolysis of γ-HCH Serve as a Model Reaction to Study Its Aerobic Enzymatic Dehydrochlorination by LinA?

机译:γ-六氯环己烷的碱性水解能否作为模型反应研究LinA的好氧酶促脱氯化氢反应?

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摘要

Hexachlorocyclohexane (HCH) isomers constitute a group of persistent organic pollutants. Their mass production and treatment have led to a global environmental problem that continues to this day. The characterization of modes of degradation of HCH by isotope fractionation is a current challenge. Multi isotope fractionation analysis provides a concept to characterize the nature of enzymatic and chemical transformation reactions. The understanding of the kinetic isotope effects (KIE) on bond cleavage reaction contributes to analyses of the mechanism of chemical and enzymatic reactions. Herein, carbon, chlorine, and hydrogen kinetic isotope effects are measured and predicted for the dehydrochlorination reaction of γ-HCH promoted by the hydroxyl ion in aqueous solution. Quantum mechanical (QM) microsolvation with an implicit solvation model and path integral formalism in combination with free-energy perturbation and umbrella sampling (PI-FEP/UM) and quantum mechanical/molecular mechanical QM/MM potentials for including solvent effects as well as calculating isotope effects are used and analyzed with respect to their performance in reproducing measured values. Reaction characterization is discussed based on the magnitudes of obtained isotope effects. The comparative analysis between the chemical dehydrochlorination of γ-HCH in aqueous media and catalyzed reaction by dehydrochlorinase, LinA is presented and discussed. Based on the values of isotope effects, these two processes seem to occur via the same net mechanism.
机译:六氯环己烷(HCH)异构体构成一组持久性有机污染物。它们的大量生产和处理导致了全球环境问题,这一问题一直持续到今天。通过同位素分馏对六氯环己烷降解方式的表征是当前的挑战。多同位素分馏分析提供了表征酶促和化学转化反应性质的概念。对键裂解反应的动力学同位素效应(KIE)的理解有助于化学和酶促反应机理的分析。在此,对于水溶液中的氢氧根离子促进的γ-HCH的脱氯化氢反应,测定并预测了碳,氯和氢的动力学同位素效应。具有隐式溶剂化模型的量子力学(QM)微溶剂化和路径积分形式主义,结合了自由能摄动和伞形采样(PI-FEP / UM)和量子力学/分子力学QM / MM势,包括溶剂效应以及计算使用同位素效应并就其在复制测量值方面的性能进行分析。基于获得的同位素效应的幅度讨论了反应表征。提出并讨论了γ-六氯环己烷在水性介质中化学脱氯化氢与脱氢氯化酶LinA催化反应之间的比较分析。基于同位素效应的值,这两个过程似乎是通过相同的净机制发生的。

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