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Quantum mechanics/coarse-grained molecular mechanics (QM/CG-MM)

机译:量子力学/粗粒分子力学(QM / CG-MM)

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摘要

Numerous molecular systems, including solutions, proteins, and composite materials, can be modeled using mixed-resolution representations, of which the quantum mechanics/molecular mechanics (QM/MM) approach has become the most widely used. However, the QM/MM approach often faces a number of challenges, including the high cost of repetitive QM computations, the slow sampling even for the MM part in those cases where a system under investigation has a complex dynamics, and a difficulty in providing a simple, qualitative interpretation of numerical results in terms of the influence of the molecular environment upon the active QM region. In this paper, we address these issues by combining QM/MM modeling with the methodology of "bottom-up" coarse-graining (CG) to provide the theoretical basis for a systematic quantum-mechanical/coarse-grained molecular mechanics (QM/CG-MM) mixed resolution approach. A derivation of the method is presented based on a combination of statistical mechanics and quantum mechanics, leading to an equation for the effective Hamiltonian of the QM part, a central concept in the QM/CG-MM theory. A detailed analysis of different contributions to the effective Hamiltonian from electrostatic, induction, dispersion, and exchange interactions between the QM part and the surroundings is provided, serving as a foundation for a potential hierarchy of QM/CG-MM methods varying in their accuracy and computational cost. A relationship of the QM/CG-MM methodology to other mixed resolution approaches is also discussed. Published by AIP Publishing.
机译:许多分子系统,包括溶液,蛋白质和复合材料,可以使用混合分辨率表示进行建模,其中量子力学/分子机械(QM / mm)方法已成为最广泛使用的。然而,QM / MM方法通常面临许多挑战,包括重复QM计算的高成本,即使在调查的系统具有复杂的动态的那些情况下,即使是MM部分的慢采样也是慢的采样,以及提供一个难题在活性QM区域对分子环境的影响方面的数值结果简单,定性解释。在本文中,我们通过将QM / MM型号与“自下而上”粗晶(CG)的方法组合来解决这些问题,以提供系统量子 - 机械/粗粒分子机制的理论基础(QM / CG -mm)混合分辨率方法。基于统计力学和量子力学的组合来提出该方法的推导,导致QM部分的有效哈密顿的方程,QM / CG-MM理论中的中心概念。提供了对QM部分与周围环境之间的静电,诱导,分散和交换相互作用的不同贡献的详细分析,作为QM / CG-MM方法的潜在层级,其精度变化的潜在等级的基础计算成本。还讨论了QM / CG-MM方法与其他混合分辨率方法的关系。通过AIP发布发布。

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