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不同分子模拟软件包中自由能计算的可再现性。

Reproducibility of Free Energy Calculations across Different Molecular Simulation Software Packages.

机构信息

Science & Technology Facilities Council , Daresbury, Warrington WA4 4AD , United Kingdom.

EaStCHEM School of Chemistry , University of Edinburgh , David Brewster Road , Edinburgh EH9 3FJ , United Kingdom.

出版信息

J Chem Theory Comput. 2018 Nov 13;14(11):5567-5582. doi: 10.1021/acs.jctc.8b00544. Epub 2018 Oct 22.

Abstract

Alchemical free energy calculations are an increasingly important modern simulation technique to calculate free energy changes on binding or solvation. Contemporary molecular simulation software such as AMBER, CHARMM, GROMACS, and SOMD include support for the method. Implementation details vary among those codes, but users expect reliability and reproducibility, i.e., for a given molecular model and set of force field parameters, comparable free energy differences should be obtained within statistical bounds regardless of the code used. Relative alchemical free energy (RAFE) simulation is increasingly used to support molecule discovery projects, yet the reproducibility of the methodology has been less well tested than its absolute counterpart. Here we present RAFE calculations of hydration free energies for a set of small organic molecules and demonstrate that free energies can be reproduced to within about 0.2 kcal/mol with the aforementioned codes. Absolute alchemical free energy simulations have been carried out as a reference. Achieving this level of reproducibility requires considerable attention to detail and package-specific simulation protocols, and no universally applicable protocol emerges. The benchmarks and protocols reported here should be useful for the community to validate new and future versions of software for free energy calculations.

摘要

无化学自由能计算是一种日益重要的现代模拟技术,可用于计算结合或溶解过程中的自由能变化。当代分子模拟软件,如 AMBER、CHARMM、GROMACS 和 SOMD,都支持该方法。这些代码的实现细节有所不同,但用户期望具有可靠性和可重复性,即对于给定的分子模型和力场参数集,无论使用哪种代码,都应在统计范围内获得可比的自由能差异。相对无化学自由能(RAFE)模拟越来越多地用于支持分子发现项目,但该方法的重现性尚未得到充分验证,而其绝对对应方法则得到了更好的验证。在这里,我们针对一组小分子进行了水合自由能的 RAFE 计算,并证明上述代码可以将自由能的重现性控制在约 0.2 kcal/mol 以内。我们还进行了绝对无化学自由能模拟作为参考。要实现这种重现性,需要对细节和特定于包的模拟协议给予极大的关注,而不会出现通用的协议。这里报告的基准测试和协议应该对社区很有用,可以用于验证新的和未来版本的自由能计算软件。

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