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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Coupled Valence-Bond State Molecular Dynamics Description of an Enzyme-Catalyzed Reaction in a Non-Aqueous Organic Solvent
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Coupled Valence-Bond State Molecular Dynamics Description of an Enzyme-Catalyzed Reaction in a Non-Aqueous Organic Solvent

机译:偶联价键状状态分子动力学描述非水性有机溶剂中的酶催化反应

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摘要

Enzymes are widely used in nonaqueous solvents to catalyze non-natural reactions. While experimental measurements showed that the solvent nature has a strong effect on the reaction kinetics, the molecular details of the catalytic mechanism in nonaqueous solvents have remained largely elusive. Here we study the transesterification reaction catalyzed by the paradigm subtilisin Carlsberg serine protease in an organic apolar solvent. The rate-limiting acylation step involves a proton transfer between active-site residues and the nucleophilic attack of the substrate to form a tetrahedral intermediate. We design the first coupled valence-bond state model that simultaneously describes both reactions in the enzymatic active site. We develop a new systematic procedure to parametrize this model on high-level ab initio QM/MM free energy calculations that account for the molecular details of the active site and for both substrate and protein conformational fluctuations. Our calculations show that the reaction energy barrier changes dramatically with the solvent and protein conformational fluctuations. We find that the mechanism of the tetrahedral intermediate formation during the acylation step is similar to that determined under aqueous conditions, and that the proton transfer, and nucleophilic attack reactions occur concertedly. We identify the reaction coordinate to be mostly due to the rearrangement of some residual water molecules close to the active site.
机译:酶广泛用于非水溶剂以催化非天然反应。虽然实验测量表明,溶剂性质对反应动力学具有很强的影响,但非水溶剂中催化机制的分子细节仍然难以捉摸。在这里,我们研究了通过帕拉维枯草芽孢杆菌碱催化的酯交换反应在有机溶剂中催化。速率限制酰化步骤涉及主动部位残基和基材的亲核侵蚀之间的质子转移以形成四面体中间体。我们设计第一耦合价键态模型,同时描述酶活性部位中的两种反应。我们开发了一种新的系统程序,可在高级AB InitiO QM / MM自由能量计算上参加了该模型,该模型考虑了活性位点的分子细节和底物和蛋白质构象波动。我们的计算表明,反应能量屏障随着溶剂和蛋白质构象波动而显着变化。我们发现在酰化步骤期间的四面体中间形成的机制类似于在水性条件下确定的,并且质子转移和亲核攻击反应齐节地发生。我们识别反应坐标,主要是由于靠近活性位点的一些残留水分子的重排。

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    UPMC Univ Paris 06 Sorbonne Univ Ecole Normale Super PSL Res Univ Dept Chim CNRS UMR 8640 PASTEUR 24 Rue Lhomond F-75005 Paris France;

    UPMC Univ Paris 06 Sorbonne Univ Ecole Normale Super PSL Res Univ Dept Chim CNRS UMR 8640 PASTEUR 24 Rue Lhomond F-75005 Paris France;

    UPMC Univ Paris 06 Sorbonne Univ Ecole Normale Super PSL Res Univ Dept Chim CNRS UMR 8640 PASTEUR 24 Rue Lhomond F-75005 Paris France;

    UPMC Univ Paris 06 Sorbonne Univ Ecole Normale Super PSL Res Univ Dept Chim CNRS UMR 8640 PASTEUR 24 Rue Lhomond F-75005 Paris France;

    UPMC Univ Paris 06 Sorbonne Univ Ecole Normale Super PSL Res Univ Dept Chim CNRS UMR 8640 PASTEUR 24 Rue Lhomond F-75005 Paris France;

    UPMC Univ Paris 06 Sorbonne Univ Ecole Normale Super PSL Res Univ Dept Chim CNRS UMR 8640 PASTEUR 24 Rue Lhomond F-75005 Paris France;

    UPMC Univ Paris 06 Sorbonne Univ Ecole Normale Super PSL Res Univ Dept Chim CNRS UMR 8640 PASTEUR 24 Rue Lhomond F-75005 Paris France;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学 ;
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