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首页> 外文期刊>Journal of physical chemistry letters >Use of Nonequilibrium Work Methods to Compute Free Energy Differences Between Molecular Mechanical and Quantum Mechanical Representations of Molecular Systems
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Use of Nonequilibrium Work Methods to Compute Free Energy Differences Between Molecular Mechanical and Quantum Mechanical Representations of Molecular Systems

机译:使用非平衡功方法计算分子系统的分子力学和量子力学表示之间的自由能差

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摘要

Carrying out free energy simulations (FES) using quantum mechanical (QM) Harniltonians remains an attractive, albeit elusive goal. Renewed efforts in this area have focused on using "indirect" thermodynamic cycles to connect "low level" simulation results to "high level" free energies. The main obstacle to computing converged free energy results between molecular mechanical (MM) and QM (Delta A(MM -> QM)), as recently demonstrated by us and others, is differences in the so-called "stiff" degrees of freedom (e.g., bond stretching) between the respective energy surfaces. Herein, we demonstrate that this problem can be efficiently circumvented using nonequilibrium work (NEW) techniques, i.e., Jarzynski's and Crooks' equations. Initial applications of computing Delta A(NEW)(MM -> QM), for blocked amino acids alanine and serine as well as to generate butane's potentials indirect QM/MM FES method, showed marked improvement over traditional FES approaches.
机译:尽管使用了难以理解的目标,但使用量子力学(QM)哈里顿主义者进行自由能模拟(FES)仍然是一个有吸引力的目标。在这一领域的新努力集中在使用“间接”热力学循环将“低水平”模拟结果与“高水平”自由能联系起来。正如我们和其他人最近所证明的那样,计算分子力学(MM)和QM(Delta A(MM-> QM))之间的聚合自由能结果的主要障碍是所谓的“刚性”自由度(在相应的能量表面之间(例如,键拉伸)。本文中,我们证明了使用非平衡功(NEW)技术(即Jarzynski和Crooks方程)可以有效地解决此问题。计算Delta A(NEW)(MM-> QM)的最初应用(用于封闭的氨基酸丙氨酸和丝氨酸)以及生成丁烷潜力的间接QM / MM FES方法显示出比传统FES方法显着的改进。

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