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Molecular simulation study of cooperativity in hydrophobic association: clusters of four hydrophobic particles

机译:疏水缔合中协同作用的分子模拟研究:四个疏水粒子的簇

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摘要

The multibody contribution to the potential of mean force (PMF) of hydrophobic association of four methane molecules in water was investigated by means of umbrella-sampling molecular dynamics. Two systems were considered: (i) a trigonal pyramid with three methane molecules at contact distance forming a fixed base, the fourth molecule being placed on the top with variable distance from the base; and (ii) a regular uniformly expanding tetrahedron. Methane-methane distances as far as 12.5 Angstrom, i.e. beyond the second solvent-separated minimum of the PMF, were considered to address the baseline problem. In contrast to the small effect in the three-body case studied previously (Protein Sci 9 (2000) 1235), the multibody contribution was found to amount to approximately 0.2 kcal/mol per methane-methane pair, or approximately 25% of the depth of the contact minimum in the PMF. The main effect of the multibody contribution to the PMF is a reduction of the height of the barrier between the contact and solvent separated minima and a narrowing of the region of its maximum, while the region of the contact minimum is affected only weakly. The reduction of the barrier is due to four-body contributions. The cooperative contributions to the PMF agree very well with those computed from the molecular surface of the systems under consideration, which further supports earlier observations that the molecular surface can be used with good accuracy to describe the energetics of hydrophobic association. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 68]
机译:通过伞式采样分子动力学研究了多体对水中四个甲烷分子疏水缔合的平均力(PMF)潜力的贡献。考虑了两个系统:(i)具有三个甲烷分子的三角锥,它们在接触距离处形成固定的碱,第四个分子放在顶部,与碱的距离可变; (ii)规则均匀膨胀的四面体。甲烷-甲烷之间的距离最远为12.5埃,即超出了PMF的第二个溶剂分离最小值,可以解决基线问题。与先前研究的三体情况的微小影响相反(Protein Sci 9(2000)1235),发现每对甲烷-甲烷对多体的贡献约为0.2 kcal / mol,或深度的约25% PMF中的最小接触数。多体对PMF的贡献的主要作用是减小了接触极和被溶剂分离的极小分子之间的势垒高度,缩小了其最大极小区域,而最小接触极小区域受到的影响很小。障碍的减少归因于四体贡献。对PMF的合作贡献与从所考虑系统的分子表面计算得出的那些非常吻合,这进一步支持了先前的观察,即可以以良好的精度使用分子表面描述疏水缔合的能量学。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:68]

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