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Molecular simulation study of cooperativity in hydrophobic association.

机译:疏水缔合中协同作用的分子模拟研究。

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摘要

To investigate the cooperativity of hydrophobic interactions, the potential of mean force of two- and three-molecule methane clusters in water was determined by molecular dynamics simulations using two methods: umbrella-sampling with the weighted histogram analysis method and thermodynamic integration. Two water models, TIP3P and TIP4P, were used, while each methane molecule was modeled as a united atom. It was found that the three-body potential of mean force is not additive, i.e., it cannot be calculated as a sum of two-body contributions, but requires an additional three-body cooperative term. The cooperative term, which amounts to only about 10% of the total hydrophobic association free energy, was found to increase the strength of hydrophobic association; this finding differs from the results of earlier Monte Carlo studies with the free energy perturbation method of Rank and Baker (1997). As in the work of Rank and Baker, the solvent contribution to the potential of mean force was found to be well approximated by the molecular surface of two methane molecules. Moreover, we also found that the cooperative term is well represented by the difference between the molecular surface of the three-methane cluster and those of all three pairs of methane molecules. In addition, it was found that, while there is a cooperative contribution to the hydrophobic association free energy albeit a small one, the errors associated with the use of pairwise potentials are comparable to or larger than this contribution.
机译:为了研究疏水相互作用的协同性,使用两种方法通过分子动力学模拟确定了两分子和三分子甲烷簇在水中的平均力的潜力:采用加权直方图分析法进行伞式采样和热力学积分。使用了两种水模型,即TIP3P和TIP4P,而每个甲烷分子均被建模为一个联合原子。已经发现,平均力的三体势不是可加的,即,不能将其作为两体贡献之和来计算,而是需要附加的三体协作项。发现仅占总疏水缔合自由能的约10%的合作项增加了疏水缔合的强度。这一发现与兰克和贝克(1997)的自由能微扰方法的早期蒙特卡洛研究结果不同。正如在Rank和Baker的工作中一样,发现溶剂对平均力的贡献可以通过两个甲烷分子的分子表面很好地近似。此外,我们还发现,合作术语可以很好地表示为三甲烷簇的分子表面与所有三对甲烷分子的分子表面之间的差异。另外,已经发现,尽管对疏水缔合自由能有协同作用,尽管很小,但与使用成对电位相关的误差与该贡献相当或更大。

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