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水在蛋白质水合和配体识别中的作用。

Water in protein hydration and ligand recognition.

机构信息

Institute of Molecular Modeling and Simulation, University of Natural Resources and Life Sciences, Vienna, Austria.

出版信息

J Mol Recognit. 2019 Dec;32(12):e2810. doi: 10.1002/jmr.2810. Epub 2019 Aug 27.

Abstract

This review describes selected basics of water in biomolecular recognition. We focus on a qualitative understanding of the most important physical aspects, how these change in magnitude between bulk water and protein environment, and how the roles that water plays for proteins arise from them. These roles include mechanical support, thermal coupling, dielectric screening, mass and charge transport, and the competition with a ligand for the occupation of a binding site. The presence or absence of water has ramifications that range from the thermodynamic binding signature of a single ligand up to cellular survival. The large inhomogeneity in water density, polarity and mobility around a solute is hard to assess in experiment. This is a source of many difficulties in the solvation of protein models and computational studies that attempt to elucidate or predict ligand recognition. The influence of water in a protein binding site on the experimental enthalpic and entropic signature of ligand binding is still a point of much debate. The strong water-water interaction in enthalpic terms is counteracted by a water molecule's high mobility in entropic terms. The complete arrest of a water molecule's mobility sets a limit on the entropic contribution of a water displacement process, while the solvent environment sets limits on ligand reactivity.

摘要

本文综述了生物分子识别中水分子的一些基本特性。我们重点定性地理解最重要的物理方面,包括这些物理性质在体相水和蛋白质环境中的变化,以及水在蛋白质中所扮演的各种角色及其产生的原因。这些作用包括机械支撑、热偶联、介电屏蔽、质量和电荷输运,以及与配体竞争结合位点的占据。水的存在或缺失会产生深远的影响,从单个配体的热力学结合特征到细胞存活。在实验中,很难评估溶质周围水分子密度、极性和迁移率的巨大不均匀性。这是蛋白质模型溶剂化和试图阐明或预测配体识别的计算研究中许多困难的来源。在蛋白质结合位点中,水分子对配体结合的实验焓和熵特征的影响仍然是一个争论点。从焓的角度来看,水分子之间强烈的相互作用被水分子在熵方面的高迁移率所抵消。水分子迁移率的完全抑制限制了水置换过程的熵贡献,而溶剂环境则限制了配体的反应性。

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Water in protein hydration and ligand recognition.水在蛋白质水合和配体识别中的作用。
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