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通过过剩化学势的分子动力学模拟对冷冻电镜重建进行从头水化

De Novo Hydration of Cryo-EM Reconstructions through Molecular Dynamics Simulations of the Excess Chemical Potential.

作者信息

Sun Qinfang, Aiyer Sriram, Biswas Avik, Haldane Allan, Chatterjee Sompriya, Matubayasi Nobuyuki, Lyumkis Dmitry, Levy Ronald M

机构信息

Center for Biophysics and Computational Biology, Temple University, Philadelphia, PA, 19122.

Department of Chemistry, Temple University, Philadelphia, PA, 19122.

出版信息

bioRxiv. 2025 May 23:2025.05.23.655847. doi: 10.1101/2025.05.23.655847.

Abstract

Predicting the precise positions of water molecules at the protein interface remains a formidable challenge, fueling active research in this field. Here, we present a novel approach based on molecular dynamics simulations that utilizes statistical thermodynamic signatures of water at protein interfaces to improve the accuracy of water placement in cryo-EM maps, with apoferritin as a model benchmark system. The interaction energy of solvent with the protein is insufficient to distinguish between high- and lower-consensus water positions, consistent with reports of earlier work. Instead, we employ a detailed statistical thermodynamic analysis based on the excess chemical potential (WT) - a measure of the thermodynamic balance between the interaction energy of an interfacial water molecule with the protein and its free energy of interaction with all of the other solvent molecules. WT is proportional to the log ratio of the local density of water molecules at the protein interface to the bulk density. 85% of the top 100 water locations with the most favorable excess chemical potential values are observed in one or more high resolution Cryo-EM maps deposited in the PDB, and 70% of the top 200 water locations indexed by excess chemical potential are observed in the cryo-EM maps. This work paves the way for the development of a cryo-EM refinement tool that integrates molecular dynamics simulations with cryo-EM data for high-resolution modeling of water networks.

摘要

预测蛋白质界面处水分子的精确位置仍然是一项艰巨的挑战,这推动了该领域的积极研究。在此,我们提出了一种基于分子动力学模拟的新方法,该方法利用蛋白质界面处水的统计热力学特征来提高冷冻电镜图谱中水定位的准确性,以脱铁铁蛋白作为模型基准系统。溶剂与蛋白质的相互作用能不足以区分高度一致和较低一致的水位置,这与早期工作的报道一致。相反,我们采用基于过量化学势(WT)的详细统计热力学分析——这是一种衡量界面水分子与蛋白质相互作用能与其与所有其他溶剂分子相互作用自由能之间热力学平衡的指标。WT与蛋白质界面处水分子局部密度与本体密度的对数比成正比。在蛋白质数据银行(PDB)中存档的一个或多个高分辨率冷冻电镜图谱中观察到了具有最有利过量化学势值的前100个水位置中的85%,并且在冷冻电镜图谱中观察到了按过量化学势索引的前200个水位置中的70%。这项工作为开发一种冷冻电镜优化工具铺平了道路,该工具将分子动力学模拟与冷冻电镜数据相结合,用于水网络的高分辨率建模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5981/12139794/bdd87624548a/nihpp-2025.05.23.655847v1-f0001.jpg

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