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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Influence of the Environment on the Oxidative Deamination of p-Substituted Benzylamines in Monoamine Oxidase
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Influence of the Environment on the Oxidative Deamination of p-Substituted Benzylamines in Monoamine Oxidase

机译:环境对单胺氧化酶中对位取代的苄胺氧化脱氨的影响

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摘要

The flavin-containing enzyme monoamine oxidase (MAO) is essential for the enzymatic decomposition of amine neurotransmitters. The exact mechanism of the oxidative deamination of amines to aldehydes by the enzyme has not yet been fully understood despite extensive research on the area. The rate limiting step is the reductive half-reaction where the Ha together with two electrons of the amine substrate is transferred to the flavin cofactor. However, it is still not known whether the hydrogen is transferred as a proton or a hydride. Experimental results cannot be fully explained by either of those mechanisms. In our previous work, theoretical results based on QM/MM calculations of the full enzyme show an intermediate situation between these two cases. In this paper, we report on an in-depth computational analysis concerning the role of the enzymatic environment for the reaction mechanism of human MAO-B with different p-substituted benzylamines as substrates. Our results show that steric and electrostatic effects from the active site environment turn the mechanism closer to an asynchronous polar nucleophilic mechanism. We found indications that the protein environment of MAO-A enhances the polar nucleophilic character of the mechanism compared to that of MAO-B.
机译:含黄素的酶单胺氧化酶(MAO)对于胺神经递质的酶促分解至关重要。尽管对该领域进行了广泛的研究,但仍未完全了解该酶将胺氧化脱氨成醛的确切机理。限速步骤是还原半反应,其中Ha与胺底物的两个电子一起转移到黄素辅因子上。然而,仍然不清楚氢是作为质子还是作为氢被转移。这些机制中的任何一种都无法完全解释实验结果。在我们以前的工作中,基于全酶QM / MM计算的理论结果表明这两种情况之间存在中间情况。在本文中,我们报告了关于酶环境对人MAO-B与不同对位取代苄胺为底物的反应机理的作用的深入计算分析的报告。我们的结果表明,来自活动位点环境的空间和静电效应使该机理更接近于异步极性亲核机理。我们发现迹象表明,与MAO-B相比,MAO-A的蛋白质环境增强了该机理的极性亲核特性。

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