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Collective solvent flows around a protein investigated by molecular dynamics simulation

机译:分子动力学模拟研究蛋白质周围的集体溶剂流动

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Translational motions of water molecules in various systems equilibrated at room temperature are thought to be diffusive and nondirectional. We performed molecular dynamics simulations of a protein system and showed that the water molecules collectively move around the protein. The motions of two water molecules, which were about 12 A away from each other, are correlated to each other. Such collective motions of water can be regarded as flows around the protein, and the flows exhibited various coherent patterns: fair currents, vortices, and divergent flows. The patterns were highly fluctuating: a set of patterns changed to a different set of patterns within a time scale of 10 ps. Thus, the water motions observed in a scale of length smaller than 12 A and a time scale shorter than 10 ps were nondiffusive, and the motions above these scales were diffusive, where the flows disappeared. The flows near the protein surface had an orientational propensity to be highly parallel to the protein surface, and this propensity gradually vanished with an increment of distance from the protein surface. The divergent patterns of flows, which frequently emerge during the fluctuations of flows, may temporarily cause solvent drying in the vicinity of solutes. The current simulation is supportive of a molecular interaction mechanism that the fluctuations of hydration structure induce attractive interactions between solutes.
机译:在室温下平衡的各种系统中水分子的平移运动被认为是扩散性和无方向性的。我们对蛋白质系统进行了分子动力学模拟,结果表明水分子在蛋白质周围共同运动。彼此相距约12 A的两个水分子的运动相互关联。水的这种集体运动可以看作是蛋白质周围的流动,并且流动表现出各种连贯的模式:公平流动,涡旋和发散流动。模式波动很大:一组模式在10 ps的时间范围内更改为另一组模式。因此,以小于12 A的长度标度和小于10 ps的时间标度观察到的水运动是非扩散性的,而在这些标度以上的运动是扩散性的,流量消失了。靠近蛋白质表面的流动具有与蛋白质表面高度平行的定向倾向,并且随着与蛋白质表面的距离增加,这种倾向逐渐消失。在流量波动期间经常出现的不同流量模式可能会暂时导致溶质附近的溶剂干燥。当前的模拟支持水合结构的波动引起溶质之间有吸引力的相互作用的分子相互作用机理。

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