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gmx_MMPBSA:一种使用GROMACS进行终态自由能计算的新工具。

gmx_MMPBSA: A New Tool to Perform End-State Free Energy Calculations with GROMACS.

作者信息

Valdés-Tresanco Mario S, Valdés-Tresanco Mario E, Valiente Pedro A, Moreno Ernesto

机构信息

Faculty of Basic Sciences, University of Medellin, Medellin 050026, Colombia.

Centre for Molecular Simulations and Department of Biological Sciences, University of Calgary, Calgary, Alberta T2N 1N4, Canada.

出版信息

J Chem Theory Comput. 2021 Oct 12;17(10):6281-6291. doi: 10.1021/acs.jctc.1c00645. Epub 2021 Sep 29.

Abstract

Molecular mechanics/Poisson-Boltzmann (Generalized-Born) surface area is one of the most popular methods to estimate binding free energies. This method has been proven to balance accuracy and computational efficiency, especially when dealing with large systems. As a result of its popularity, several programs have been developed for performing MM/PB(GB)SA calculations within the GROMACS community. These programs, however, present several limitations. Here we present gmx_MMPBSA, a new tool to perform end-state free energy calculations from GROMACS molecular dynamics trajectories. gmx_MMPBSA provides the user with several options, including binding free energy calculations with different solvation models (PB, GB, or 3D-RISM), stability calculations, computational alanine scanning, entropy corrections, and binding free energy decomposition. Noteworthy, several promising methodologies to calculate relative binding free energies such as alanine scanning with variable dielectric constant and interaction entropy have also been implemented in gmx_MMPBSA. Two additional tools-gmx_MMPBSA_test and gmx_MMPBSA_ana-have been integrated within gmx_MMPBSA to improve its usability. Multiple illustrating examples can be accessed through gmx_MMPBSA_test, while gmx_MMPBSA_ana provides fast, easy, and efficient access to different graphics plotted from gmx_MMPBSA output files. The latest version (v1.4.3, 26/05/2021) is available free of charge (documentation, test files, and tutorials included) at https://github.com/Valdes-Tresanco-MS/gmx_MMPBSA.

摘要

分子力学/泊松-玻尔兹曼(广义玻恩)表面积法是估算结合自由能最常用的方法之一。该方法已被证明在准确性和计算效率之间取得了平衡,尤其是在处理大型系统时。由于其受欢迎程度,GROMACS社区已经开发了几个程序来执行MM/PB(GB)SA计算。然而,这些程序存在一些局限性。在这里,我们展示了gmx_MMPBSA,这是一种从GROMACS分子动力学轨迹进行终态自由能计算的新工具。gmx_MMPBSA为用户提供了多种选项,包括使用不同溶剂化模型(PB、GB或3D-RISM)进行结合自由能计算、稳定性计算、计算丙氨酸扫描、熵校正和结合自由能分解。值得注意的是,gmx_MMPBSA中还实现了几种计算相对结合自由能的有前景的方法,如可变介电常数丙氨酸扫描和相互作用熵。gmx_MMPBSA中集成了另外两个工具——gmx_MMPBSA_test和gmx_MMPBSA_ana,以提高其可用性。通过gmx_MMPBSA_test可以访问多个示例,而gmx_MMPBSA_ana则提供了快速、简便且高效的方式来访问从gmx_MMPBSA输出文件绘制的不同图形。最新版本(v1.4.3,2021年5月26日)可在https://github.com/Valdes-Tresanco-MS/gmx_MMPBSA上免费获取(包括文档、测试文件和教程)。

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