Use of multistate Bennett acceptance ratio method for free-energy calculations from enhanced sampling and free-energy perturbation

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作者
Yasuhiro Matsunaga
Motoshi Kamiya
Hiraku Oshima
Jaewoon Jung
Shingo Ito
Yuji Sugita
机构
[1] Saitama University,Graduate School of Science and Engineering
[2] Institute for Molecular Science,Laboratory for Biomolecular Function Simulation
[3] RIKEN Center for Biosystems Dynamics Research,Computational Biophysics Research Team
[4] RIKEN Center for Computational Science,Theoretical Molecular Science Laboratory
[5] RIKEN Cluster for Pioneering Research,undefined
来源
Biophysical Reviews | 2022年 / 14卷
关键词
Multistate Bennett acceptance ratio; Umbrella sampling; Replica exchange molecular dynamics; Free-energy perturbation; Molecular dynamics; Enhanced conformational sampling; Free-energy calculation; QM/MM calculations;
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学科分类号
摘要
Multistate Bennett acceptance ratio (MBAR) works as a method to analyze molecular dynamics (MD) simulation data after the simulations have been finished. It is widely used to estimate free-energy changes between different states and averaged properties at the states of interest. MBAR allows us to treat a wide range of states from those at different temperature/pressure to those with different model parameters. Due to the broad applicability, the MBAR equations are rather difficult to apply for free-energy calculations using different types of MD simulations including enhanced conformational sampling methods and free-energy perturbation. In this review, we first summarize the basic theory of the MBAR equations and categorize the representative usages into the following four: (i) perturbation, (ii) scaling, (iii) accumulation, and (iv) full potential energy. For each, we explain how to prepare input data using MD simulation trajectories for solving the MBAR equations. MBAR is also useful to estimate reliable free-energy differences using MD trajectories based on a semi-empirical quantum mechanics/molecular mechanics (QM/MM) model and ab initio QM/MM energy calculations on the MD snapshots. We also explain how to use the MBAR software in the GENESIS package, which we call mbar_analysis, for the four representative cases. The proposed estimations of free-energy changes and thermodynamic averages are effective and useful for various biomolecular systems.
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页码:1503 / 1512
页数:9
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