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血红素蛋白:溶剂在门和通道动力学中的作用。

Heme proteins: the role of solvent in the dynamics of gates and portals.

机构信息

Department of Chemical Sciences, University of Cagliari, Italy.

出版信息

J Am Chem Soc. 2010 Apr 14;132(14):5156-63. doi: 10.1021/ja909822d.

Abstract

Water plays a pivotal role in the correct functioning of proteins. Hydration is fundamental to their stability and flexibility, to folding process and specific functions, and to protein-protein interactions. In this work, the effects of solvation on proteins dynamics have been investigated by employing molecular dynamics simulations and using myoglobin as a model system. The investigation has been focused on solvent waters residing around/inside the protein, with average times of up to tens of nanoseconds, revealing that these slow waters may have significant effects on biological functioning of the protein. Our study pointed out that water is able to interact with proteins in diverse ways, leading to different kinds of perturbations in their intrinsic dynamic behavior. In particular, for myoglobin it was found that a water molecule can (i) "block" entry/escape of ligands to/from a particular docking site, (ii) act as a "wedge" modulating the dynamics of internal cavities, or (iii) join a "flow" of waters taking a ligand into (or "washing" a ligand away from) the protein interior. The information gathered in this work allowed us to provide a fingerprint of protein solvation state, the hydration sites map, which may represent a novel tool for comparing different forms/species of globular proteins.

摘要

水在蛋白质的正常功能中起着关键作用。水合作用对于蛋白质的稳定性和灵活性、折叠过程和特定功能以及蛋白质-蛋白质相互作用至关重要。在这项工作中,通过分子动力学模拟研究了溶剂对蛋白质动力学的影响,并以肌红蛋白作为模型系统。研究集中在蛋白质周围/内部的溶剂水,平均时间长达数十纳秒,结果表明这些缓慢的水可能对蛋白质的生物学功能有重大影响。我们的研究指出,水可以以多种方式与蛋白质相互作用,导致其固有动力学行为的不同类型的扰动。特别是,对于肌红蛋白,我们发现一个水分子可以 (i)“阻挡”配体进出特定停靠点,(ii) 作为调节内部腔动力学的“楔子”,或 (iii) 加入将配体带入(或“冲洗”配体离开)蛋白质内部的水流。这项工作中收集的信息使我们能够提供蛋白质溶剂状态的指纹图谱,即水合位点图谱,这可能成为比较不同形式/种类的球蛋白的新工具。

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