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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Application of Adaptive QM/MM Methods to Molecular Dynamics Simulations of Aqueous Systems
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Application of Adaptive QM/MM Methods to Molecular Dynamics Simulations of Aqueous Systems

机译:自适应QM / MM方法在水性体系分子动力学模拟中的应用。

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摘要

The difference-based adaptive solvation quantum mechanics/molecular mechanics (adQM/MM) method (J. Chem. Theory Comput. 2009, 5, 2212) as implemented in the Amber software was applied to the study of several chemical processes in solution. The adQM/MM method is based on an efficient selection scheme that enables quantum-mechanical treatment of the active region of a molecular system in solution taking explicitly into account diffusion of solvent molecules between the QM and the MM regions. Specifically, adQM/MM molecular dynamics simulations are carried out to characterize (1) the free energy profiles of halide exchange S_N2 reactions in water, (2) the hydration structure of the Cl~- ion, and (3) the solvation structure of the switterionic form of glycine in water. A comparison is made with the results obtained using standard MM and QM/MM methods as well as with the available fully QM and experimental data. In all cases, it is shown that the adaptive QM/MM simulations provide a physically realistic description of the system of interest.
机译:在Amber软件中实施的基于差异的自适应溶剂化量子力学/分子力学(adQM / MM)方法(J. Chem。Theory Comput。2009,5,2212)被用于研究溶液中的几种化学过程。 adQM / MM方法基于有效的选择方案,该方案能够对溶液中分子系统的活性区域进行量子力学处理,同时明确考虑了溶剂分子在QM和MM区域之间的扩散。具体来说,进行adQM / MM分子动力学模拟以表征(1)卤化物交换S_N2反应在水中的自由能谱,(2)Cl〜-离子的水合结构,以及(3)氯离子的溶剂化结构。水中甘氨酸的两性离子形式。与使用标准MM和QM / MM方法获得的结果以及可用的完整QM和实验数据进行了比较。在所有情况下,都表明自适应QM / MM仿真提供了感兴趣系统的实际描述。

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