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用于改善崎岖能量表面中“炼金术”自由能计算的协同方法。

Synergistic approach to improve "alchemical" free energy calculation in rugged energy surface.

作者信息

Min Donghong, Li Hongzhi, Li Guohui, Bitetti-Putzer Ryan, Yang Wei

机构信息

School of Computational Science, Florida State University, Tallahassee, Florida 32306, USA.

出版信息

J Chem Phys. 2007 Apr 14;126(14):144109. doi: 10.1063/1.2715950.

Abstract

The authors present an integrated approach to "alchemical" free energy simulation, which permits efficient calculation of the free energy difference on rugged energy surface. The method is designed to obtain efficient canonical sampling for rapid free energy convergence. The proposal is motivated by the insight that both the exchange efficiency in the presently designed dual-topology alchemical Hamiltonian replica exchange method (HREM), and the confidence of the free energy determination using the overlap histogramming method, depend on the same criterion, viz., the overlaps of the energy difference histograms between all pairs of neighboring states. Hence, integrating these two techniques can produce a joint solution to the problems of the free energy convergence and conformational sampling in the free energy simulations, in which lambda parameter plays two roles to simultaneously facilitate the conformational sampling and improve the phase space overlap for the free energy determination. Specifically, in contrast with other alchemical HREM based free energy simulation methods, the dual-topology approach can ensure robust conformational sampling. Due to these features (a synergistic solution to the free energy convergence and canonical sampling, and the improvement of the sampling efficiency with the dual-topology treatment), the present approach, as demonstrated in the model studies of the authors, is highly efficient in obtaining accurate free energy differences, especially for the systems with rough energy landscapes.

摘要

作者提出了一种用于“炼金术”自由能模拟的综合方法,该方法能够在崎岖的能量表面上高效计算自由能差。该方法旨在实现高效的正则采样,以实现快速的自由能收敛。这一建议的灵感来源于这样一种认识:当前设计的双拓扑炼金术哈密顿量副本交换方法(HREM)中的交换效率,以及使用重叠直方图方法确定自由能的可信度,都取决于同一个标准,即所有相邻状态对之间能量差直方图的重叠。因此,将这两种技术结合起来,可以为自由能模拟中的自由能收敛和构象采样问题提供一个联合解决方案,其中λ参数起到两个作用,即同时促进构象采样并改善用于自由能确定的相空间重叠。具体而言,与其他基于炼金术HREM的自由能模拟方法相比,双拓扑方法能够确保稳健的构象采样。由于这些特性(对自由能收敛和正则采样的协同解决方案,以及通过双拓扑处理提高采样效率),正如作者在模型研究中所展示的那样,本方法在获得准确的自由能差方面非常高效,尤其是对于具有粗糙能量景观的系统。

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