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计算构型盆地的自由能差。

Computing Free Energy Differences of Configurational Basins.

作者信息

Giovannelli Edoardo, Cardini Gianni, Gellini Cristina, Pietraperzia Giangaetano, Chelli Riccardo

机构信息

Dipartimento di Chimica, Università di Firenze , Via della Lastruccia 3, I-50019 Sesto Fiorentino, Italy.

European Laboratory for Nonlinear Spectroscopy (LENS) , Via Nello Carrara 1, I-50019 Sesto Fiorentino, Italy.

出版信息

J Chem Theory Comput. 2015 Aug 11;11(8):3561-71. doi: 10.1021/acs.jctc.5b00248.

Abstract

A simulation-based approach is proposed to estimate free energy differences between configurational states A and B, defined in terms of collective coordinates of the molecular system. The computational protocol is organized into three stages that can be carried on simultaneously. Two of them consist of independent simulations aimed at sampling, in turn, A and B states. In order to limit the evolution of the system around A and B, biased sampling simulations such as umbrella sampling can be employed. These simulations allow us to estimate local configuration integrals associated with A and B, which can be viewed as vibrational contributions to the free energy. Free energy evaluation is completed by the linking-path stage, in which the potential of mean force difference is estimated between two arbitrary points of the configurational surface, located the first around A and the second around B. The linking path in the space of the collective coordinates is arbitrary and can be computed with any method, starting from adaptive biasing potential/force approaches to nonequilibrium techniques. As an illustrative example, we present the calculation of free energy differences between conformational states of the alanine dipeptide in the space of backbone dihedral angles. The basic advantage of this method, that we term "path-linked domains" scheme, is to prevent accurate calculation of the whole free energy hypersurface in the space of the collective coordinates, thus limiting the statistical sampling to a minimum. Path-linked domains schemes can be applied to a variety of biochemical processes, such as protein-ligand complexation or folding-unfolding interconversion.

摘要

本文提出了一种基于模拟的方法,用于估计构型状态A和B之间的自由能差,这两种构型状态是根据分子系统的集体坐标定义的。计算协议分为三个阶段,可以同时进行。其中两个阶段包括独立的模拟,分别用于依次采样A态和B态。为了限制系统在A态和B态附近的演化,可以采用如伞形采样等有偏采样模拟。这些模拟使我们能够估计与A态和B态相关的局部构型积分,可将其视为对自由能的振动贡献。自由能评估通过连接路径阶段完成,在该阶段,估计构型表面上两个任意点之间的平均力差势能,第一个点位于A态附近,第二个点位于B态附近。集体坐标空间中的连接路径是任意的,可以用任何方法计算,从自适应偏置势/力方法到非平衡技术。作为一个说明性例子,我们给出了在主链二面角空间中丙氨酸二肽构象状态之间自由能差的计算。我们将这种方法称为“路径连接域”方案,其基本优点是避免在集体坐标空间中精确计算整个自由能超曲面,从而将统计采样限制到最小。路径连接域方案可应用于各种生化过程,如蛋白质-配体络合或折叠-去折叠相互转换。

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