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通过计算机模拟研究纳米级疏水口袋内的水性质。

Water properties inside nanoscopic hydrophobic pocket studied by computer simulations.

作者信息

Setny Piotr, Geller Maciej

机构信息

Biophysics Department, Warsaw University, Zwirki i Wigury 93, 02-089 Warsaw, Poland.

出版信息

J Chem Phys. 2006 Oct 14;125(14):144717. doi: 10.1063/1.2355487.

Abstract

The structure and dynamics of water in the vicinity of the hemispherical hydrophobic pocket of 8 A radius were examined via molecular dynamics simulations in NVT ensemble. Density, hydrogen bonding properties, and residence times of water molecules were projected on two-dimensional planes providing a spatial description of water behavior. We found that the average water density is significantly depleted relative to bulk value. A detailed analysis of pocket occupancy revealed fluctuations between states of completely empty pocket and a pocket filled with a bulklike fluid, which seem to result from collective behavior of water molecules. Free energy differences accompanying these fluctuations are rather small, suggesting that the given pocket radius is close to the critical one for transition between gas and liquid phases in the considered system. We show that the situation is different in the case of a simple Lennard-Jones fluid. These results indicate that changing the surface curvature from flat to concave may lead to qualitative difference in water behavior in its vicinity. We think that our studies may also put some light on binding site desolvation process which is necessary to understand to make correct predictions of binding energies.

摘要

通过在NVT系综中的分子动力学模拟,研究了半径为8埃的半球形疏水口袋附近水的结构和动力学。水分子的密度、氢键性质和停留时间被投影到二维平面上,以提供水行为的空间描述。我们发现,相对于本体值,平均水密度显著降低。对口袋占有率的详细分析揭示了完全空口袋状态和充满类本体流体的口袋状态之间的波动,这似乎是由水分子的集体行为导致的。伴随这些波动的自由能差异相当小,表明给定的口袋半径接近所考虑系统中气相和液相之间转变的临界半径。我们表明,对于简单的 Lennard-Jones 流体,情况有所不同。这些结果表明,将表面曲率从平面变为凹面可能会导致其附近水行为的定性差异。我们认为,我们的研究也可能为理解结合位点去溶剂化过程提供一些线索,而这一过程对于正确预测结合能是必要的。

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