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Path Integral Calculation of the Hydrogen/Deuterium Kinetic Isotope Effect in Monoamine Oxidase A-Catalyzed Decomposition of Benzylamine

机译:单胺氧化酶A催化苄胺分解氢/氘动力学同位素效应的路径积分计算

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摘要

Monoamine oxidase A (MAO A) is a well-known enzyme responsible for the oxidative deamination of several important monoaminergic neurotransmitters. The rate-limiting step of amine decomposition is hydride anion transfer from the substrate α–CH2 group to the N5 atom of the flavin cofactor moiety. In this work, we focus on MAO A-catalyzed benzylamine decomposition in order to elucidate nuclear quantum effects through the calculation of the hydrogen/deuterium (H/D) kinetic isotope effect. The rate-limiting step of the reaction was simulated using a multiscale approach at the empirical valence bond (EVB) level. We applied path integral quantization using the quantum classical path method (QCP) for the substrate benzylamine as well as the MAO cofactor flavin adenine dinucleotide. The calculated H/D kinetic isotope effect of 6.5 ± 1.4 is in reasonable agreement with the available experimental values.
机译:单胺氧化酶A(MAO A)是一种众所周知的酶,负责几种重要的单胺能神经递质的氧化脱氨作用。胺分解的限速步骤是氢化物阴离子从底物α–CH2基团转移到黄素辅因子部分的N5原子上。在这项工作中,我们专注于MAO A催化的苄胺分解,以便通过计算氢/氘(H / D)动力学同位素效应来阐明核量子效应。反应的限速步骤是使用多价方法在经验价键(EVB)级别模拟的。我们使用量子经典路径方法(QCP)对底物苄胺以及MAO辅因子黄素腺嘌呤二核苷酸应用路径积分量化。计算出的H / D动力学同位素效应为6.5±1.4,与可用的实验值基本吻合。

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