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用于多维炼金术计算的扩展系综的多拓扑副本交换

Multiple Topology Replica Exchange of Expanded Ensembles for Multidimensional Alchemical Calculations.

作者信息

Friedman Anika J, Hsu Wei-Tse, Shirts Michael R

机构信息

Department of Chemical and Biological Engineering, University of Colorado Boulder, Boulder, Colorado 80309, United States.

出版信息

J Chem Theory Comput. 2025 Jan 14;21(1):230-240. doi: 10.1021/acs.jctc.4c01268. Epub 2025 Jan 1.

DOI:10.1021/acs.jctc.4c01268
PMID:39743749
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11732712/
Abstract

Relative free energy (RFE) calculations are now widely used in academia and the industry, but their accuracy is often limited by poor sampling of the complexes' conformational ensemble. To help address conformational sampling problems when simulating many relative binding free energies, we developed a novel method termed multiple topology replica exchange of expanded ensembles (MT-REXEE). This method enables parallel expanded ensemble calculations, facilitating iterative RFE computations while allowing conformational exchange between parallel transformations. These iterative transformations can be adaptable to any set of systems with a common backbone or central substructure. We demonstrate that the MT-REXEE method maintains thermodynamic cycle closure to the same extent as standard expanded ensemble calculations for both solvation free energy and relative binding free energy calculations. The transformations tested involve systems that incorporate diverse heavy atoms and multisite perturbations of a small molecule core resembling multisite λ dynamics, without necessitating modifications to the MD code. Our initial implementation is in GROMACS. We outline a systematic approach for the topology setup and provide instructions on how to perform inter-replica coordinate modifications. This work shows that MT-REXEE can be used to perform accurate and reproducible free energy estimates and prompts expansion to more complex test systems and other molecular dynamics simulation infrastructures.

摘要

相对自由能(RFE)计算如今在学术界和工业界得到广泛应用,但其准确性常常受到复合物构象系综采样不足的限制。为了在模拟多个相对结合自由能时帮助解决构象采样问题,我们开发了一种名为扩展系综的多重拓扑副本交换(MT - REXEE)的新方法。该方法能够进行并行扩展系综计算,便于进行迭代RFE计算,同时允许在并行变换之间进行构象交换。这些迭代变换可适用于任何具有共同主链或中心子结构的系统集合。我们证明,对于溶剂化自由能和相对结合自由能计算,MT - REXEE方法与标准扩展系综计算一样,能在相同程度上维持热力学循环闭合。所测试的变换涉及包含不同重原子的系统以及类似于多位点λ动力学的小分子核心的多位点扰动,无需对分子动力学代码进行修改。我们最初的实现是在GROMACS中。我们概述了一种用于拓扑设置的系统方法,并提供了关于如何进行副本间坐标修改的说明。这项工作表明,MT - REXEE可用于进行准确且可重复的自由能估计,并促使其扩展到更复杂的测试系统和其他分子动力学模拟基础设施。

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