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绝对结合自由能计算埋在水中的分子。

Absolute Binding Free Energy Calculations for Buried Water Molecules.

机构信息

Department of Pharmaceutical Sciences, University of California, Irvine, California92697, United States.

Department of Chemistry, University of California, Irvine, California92697, United States.

出版信息

J Chem Theory Comput. 2022 Nov 8;18(11):6482-6499. doi: 10.1021/acs.jctc.2c00658. Epub 2022 Oct 5.

Abstract

Water often plays a key role in mediating protein-ligand interactions. Understanding contributions from active-site water molecules to binding thermodynamics of a ligand is important in predicting binding free energies for ligand optimization. In this work, we tested a non-equilibrium switching method for absolute binding free energy calculations on water molecules in binding sites of 13 systems. We discuss the lessons we learned about identified issues that affected our calculations and ways to address them. This work fits with our larger focus on how to do accurate ligand binding free energy calculations when water rearrangements are very slow, such as rearrangements due to ligand modification (as in relative free energy calculations) or ligand binding (as in absolute free energy calculations). The method studied in this work can potentially be used to account for limited water sampling via providing endpoint corrections to free energy calculations using our calculated binding free energy of water.

摘要

水在介导蛋白质-配体相互作用中起着关键作用。了解活性位点水分子对配体结合热力学的贡献对于预测配体优化的结合自由能非常重要。在这项工作中,我们测试了一种非平衡切换方法,用于计算 13 个体系结合位点中水分子的绝对结合自由能。我们讨论了在计算中遇到的问题及其解决方法。这项工作符合我们的研究重点,即当水重排非常缓慢时,如由于配体修饰(如相对自由能计算)或配体结合(如绝对自由能计算)引起的重排,如何进行准确的配体结合自由能计算。本研究中所研究的方法可以通过使用我们计算的水的结合自由能来提供对自由能计算的终点校正,从而潜在地用于有限的水采样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1e2/9873352/56a6e676b0b0/nihms-1863067-f0002.jpg

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