首页> 外文期刊>Journal of chemical theory and computation: JCTC >A Novel Strategy to Study Electrostatic Effects in Chemical Reactions: Differences between the Role of Solvent and the Active Site of Chalcone Isomerase in a Michael Addition
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A Novel Strategy to Study Electrostatic Effects in Chemical Reactions: Differences between the Role of Solvent and the Active Site of Chalcone Isomerase in a Michael Addition

机译:研究化学反应中静电效应的新策略:迈克尔加成中溶剂和查尔酮异构酶活性位点之间的差异

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摘要

The electrostatic behavior of active site residues in enzyme catalysis is quite different from that of water molecules in solution. To highlight the electrostatic differences between both environments, we propose a QM/MM strategy to study the role of the environment in chemical reactions. The novelty of the present communication is that free energy surfaces are generated by means of two distinguished reaction coordinates: a solute coordinate and the electrostatic potential created by the environment. This is applied to analyze the origin of catalysis in the transformation of a chalcone into a flavanone, a Michael addition that requires the desolvation of the nucleophile.
机译:酶催化中活性位点残基的静电行为与溶液中水分子的静电行为有很大不同。为了突出两种环境之间的静电差异,我们提出了一种QM / MM策略来研究环境在化学反应中的作用。本交流的新颖之处在于,自由能表面是通过两个不同的反应坐标生成的:溶质坐标和环境产生的静电势。这被用于分析查尔酮向黄烷酮的转化中催化的起源,黄烷酮是需要亲核试剂去溶剂化的迈克尔加成反应。

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