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利用恒定pH值分子动力学来计算pH依赖性结合自由能的协议。

Protocols utilizing constant pH molecular dynamics to compute pH-dependent binding free energies.

作者信息

Kim M Olivia, Blachly Patrick G, Kaus Joseph W, McCammon J Andrew

机构信息

Department of Chemistry and Biochemistry, University of California San Diego , La Jolla, California 92093, United States.

出版信息

J Phys Chem B. 2015 Jan 22;119(3):861-72. doi: 10.1021/jp505777n. Epub 2014 Aug 25.

Abstract

In protein-ligand binding, the electrostatic environments of the two binding partners may vary significantly in bound and unbound states, which may lead to protonation changes upon binding. In cases where ligand binding results in a net uptake or release of protons, the free energy of binding is pH-dependent. Nevertheless, conventional free energy calculations and molecular docking protocols typically do not rigorously account for changes in protonation that may occur upon ligand binding. To address these shortcomings, we present a simple methodology based on Wyman's binding polynomial formalism to account for the pH dependence of binding free energies and demonstrate its use on cucurbit[7]uril (CB[7]) host-guest systems. Using constant pH molecular dynamics and a reference binding free energy that is taken either from experiment or from thermodynamic integration computations, the pH-dependent binding free energy is determined. This computational protocol accurately captures the large pKa shifts observed experimentally upon CB[7]:guest association and reproduces experimental binding free energies at different levels of pH. We show that incorrect assignment of fixed protonation states in free energy computations can give errors of >2 kcal/mol in these host-guest systems. Use of the methods presented here avoids such errors, thus suggesting their utility in computing proton-linked binding free energies for protein-ligand complexes.

摘要

在蛋白质-配体结合中,两个结合伙伴的静电环境在结合态和未结合态可能有显著差异,这可能导致结合时的质子化变化。在配体结合导致质子净摄取或释放的情况下,结合自由能取决于pH值。然而,传统的自由能计算和分子对接协议通常没有严格考虑配体结合时可能发生的质子化变化。为了解决这些缺点,我们提出了一种基于怀曼结合多项式形式的简单方法,以考虑结合自由能的pH依赖性,并展示其在葫芦[7]脲(CB[7])主客体系统中的应用。使用恒定pH分子动力学和取自实验或热力学积分计算的参考结合自由能,确定pH依赖性结合自由能。该计算协议准确地捕捉了实验观察到的CB[7]:客体缔合时的大pKa位移,并再现了不同pH水平下的实验结合自由能。我们表明,在这些主客体系统中,自由能计算中固定质子化状态的错误分配会导致>2 kcal/mol的误差。使用本文提出的方法可以避免此类误差,因此表明它们在计算蛋白质-配体复合物的质子偶联结合自由能方面的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0621/4306499/21217b617e19/jp-2014-05777n_0001.jpg

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