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考虑溶剂化相关效应对蛋白质腔中水分子网络热力学的影响。

Accounting for Solvation Correlation Effects on the Thermodynamics of Water Networks in Protein Cavities.

机构信息

Department of Chemistry and Applied Biosciences, ETH Zürich, Vladimir-Prelog-Weg 2, 8093 Zürich, Switzerland.

出版信息

J Chem Inf Model. 2023 Mar 27;63(6):1794-1805. doi: 10.1021/acs.jcim.2c01610. Epub 2023 Mar 14.

Abstract

Macromolecular recognition and ligand binding are at the core of biological function and drug discovery efforts. Water molecules play a significant role in mediating the protein-ligand interaction, acting as more than just the surrounding medium by affecting the thermodynamics and thus the outcome of the binding process. As individual water contributions are impossible to measure experimentally, a range of computational methods have emerged to identify hydration sites in protein pockets and characterize their energetic contributions for drug discovery applications. Even though several methods model solvation effects explicitly, they focus on determining the stability of specific water sites independently and neglect solvation correlation effects upon replacement of clusters of water molecules, which typically happens in hit-to-lead optimization. In this work, we rigorously determine the conjoint effects of replacing all combinations of water molecules in protein binding pockets through the use of the RE-EDS multistate free-energy method, which combines Hamiltonian replica exchange (RE) and enveloping distribution sampling (EDS). Applications on the small bovine pancreatic trypsin inhibitor and four proteins of the bromodomain family illustrate the extent of solvation correlation effects on water thermodynamics, with the favorability of replacement of the water sites by pharmacophore probes highly dependent on the composition of the water network and the pocket environment. Given the ubiquity of water networks in biologically relevant protein targets, we believe our approach can be helpful for computer-aided drug discovery by providing a pocket-specific and systematic consideration of solvation effects on ligand binding and selectivity.

摘要

大分子识别和配体结合是生物功能和药物发现努力的核心。水分子在介导蛋白质-配体相互作用中起着重要作用,它们不仅是周围的介质,还通过影响热力学从而影响结合过程的结果。由于无法从实验上测量单个水分子的贡献,因此出现了一系列计算方法来识别蛋白质口袋中的水合位点,并描述它们在药物发现应用中的能量贡献。尽管有几种方法明确地模拟溶剂化效应,但它们专注于独立确定特定水合位点的稳定性,并忽略了在进行命中到先导优化时替换水分子簇所产生的溶剂化相关效应。在这项工作中,我们通过使用 RE-EDS 多态自由能方法(该方法结合了哈密顿复制交换 (RE) 和包络分布采样 (EDS)),严格确定了在蛋白质结合口袋中替换所有水分子组合的联合效应。对小型牛胰蛋白酶抑制剂和四个溴结构域家族蛋白的应用说明了溶剂化相关效应对水热力学的影响程度,通过药效团探针替换水合位点的有利程度高度依赖于水分子网络的组成和口袋环境。鉴于水网络在与生物学相关的蛋白质靶标中的普遍性,我们相信我们的方法可以通过提供针对口袋的和系统的考虑溶剂化效应对配体结合和选择性的影响,从而有助于计算机辅助药物发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2593/10052353/08f03b36a381/ci2c01610_0001.jpg

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