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BOSS-高斯界面在亨利反应和甲基转移反应的量子力学/分子力学模拟中的应用。

Application of a BOSS-Gaussian interface for QM/MM simulations of Henry and methyl transfer reactions.

作者信息

Vilseck Jonah Z, Kostal Jakub, Tirado-Rives Julian, Jorgensen William L

机构信息

Department of Chemistry, Yale University, New Haven, Connecticut, 06520-8107.

出版信息

J Comput Chem. 2015 Oct 15;36(27):2064-74. doi: 10.1002/jcc.24045. Epub 2015 Aug 27.

Abstract

Hybrid quantum mechanics and molecular mechanics (QM/MM) computer simulations have become an indispensable tool for studying chemical and biological phenomena for systems too large to treat with QM alone. For several decades, semiempirical QM methods have been used in QM/MM simulations. However, with increased computational resources, the introduction of ab initio and density function methods into on-the-fly QM/MM simulations is being increasingly preferred. This adaptation can be accomplished with a program interface that tethers independent QM and MM software packages. This report introduces such an interface for the BOSS and Gaussian programs, featuring modification of BOSS to request QM energies and partial atomic charges from Gaussian. A customizable C-shell linker script facilitates the interprogram communication. The BOSS-Gaussian interface also provides convenient access to Charge Model 5 (CM5) partial atomic charges for multiple purposes including QM/MM studies of reactions. In this report, the BOSS-Gaussian interface is applied to a nitroaldol (Henry) reaction and two methyl transfer reactions in aqueous solution. Improved agreement with experiment is found by determining free-energy surfaces with MP2/CM5 QM/MM simulations than previously reported investigations using semiempirical methods.

摘要

混合量子力学与分子力学(QM/MM)计算机模拟已成为研究化学和生物现象不可或缺的工具,适用于那些规模太大而无法仅用QM处理的系统。几十年来,半经验QM方法一直用于QM/MM模拟。然而,随着计算资源的增加,越来越倾向于将从头算和密度泛函方法引入实时QM/MM模拟。这种适配可以通过一个程序接口来实现,该接口连接独立的QM和MM软件包。本报告介绍了一种用于BOSS和高斯程序的接口,其特点是对BOSS进行了修改,以便从高斯程序请求QM能量和部分原子电荷。一个可定制的C-shell链接器脚本有助于程序间的通信。BOSS-高斯接口还为多种用途提供了方便的Charge Model 5(CM5)部分原子电荷访问途径,包括对反应的QM/MM研究。在本报告中,BOSS-高斯接口被应用于硝基醇(亨利)反应和水溶液中的两个甲基转移反应。通过使用MP2/CM5 QM/MM模拟确定自由能表面,发现与实验的一致性比以前使用半经验方法的研究有所提高。

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