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隐式溶剂模型

Implicit solvent models.

作者信息

Roux B, Simonson T

机构信息

Départements de physique et de chimie, Université de Montréal, C.P. 6128, succ. Centre-Ville, Montréal, QC, Canada H3C 3J7.

出版信息

Biophys Chem. 1999 Apr 5;78(1-2):1-20. doi: 10.1016/s0301-4622(98)00226-9.

Abstract

Implicit solvent models for biomolecular simulations are reviewed and their underlying statistical mechanical basis is discussed. The fundamental quantity that implicit models seek to approximate is the solute potential of mean force, which determines the statistical weight of solute conformations, and which is obtained by averaging over the solvent degrees of freedom. It is possible to express the total free energy as the reversible work performed in two successive steps. First, the solute is inserted in the solvent with zero atomic partial charges; second, the atomic partial charges of the solute are switched from zero to their full values. Consequently, the total solvation free energy corresponds to a sum of non-polar and electrostatic contributions. These two contributions are often approximated by simple geometrical models (such as solvent exposed area models) and by macroscopic continuum electrostatics, respectively. One powerful route is to approximate the average solvent density distribution around the solute, i.e. the solute-solvent density correlation functions, as in statistical mechanical integral equations. Recent progress with semi-analytical approximations makes continuum electrostatics treatments very efficient. Still more efficient are fully empirical, knowledge-based models, whose relation to explicit solvent treatments is not fully resolved, however. Continuum models that treat both solute and solvent as dielectric continua are also discussed, and the relation between the solute fluctuations and its macroscopic dielectric constant(s) clarified.

摘要

本文综述了用于生物分子模拟的隐式溶剂模型,并讨论了其背后的统计力学基础。隐式模型试图近似的基本量是溶质平均力势,它决定了溶质构象的统计权重,并且是通过对溶剂自由度进行平均得到的。可以将总自由能表示为在两个连续步骤中执行的可逆功。首先,将零原子部分电荷的溶质插入溶剂中;其次,将溶质的原子部分电荷从零切换到其全值。因此,总溶剂化自由能对应于非极性和静电贡献的总和。这两种贡献通常分别通过简单的几何模型(如溶剂暴露面积模型)和宏观连续介质静电学来近似。一种有效的方法是像在统计力学积分方程中那样,近似溶质周围的平均溶剂密度分布,即溶质 - 溶剂密度相关函数。半解析近似的最新进展使连续介质静电学处理非常有效。然而,更有效的是完全基于经验、基于知识的模型,其与显式溶剂处理的关系尚未完全解决。还讨论了将溶质和溶剂都视为介电连续体的连续介质模型,并阐明了溶质涨落与其宏观介电常数之间的关系。

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