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ES/IS:通过将动力学模拟与显式溶剂和隐式溶剂连续介质模型相结合来估计构象自由能。

ES/IS: estimation of conformational free energy by combining dynamics simulations with explicit solvent with an implicit solvent continuum model.

作者信息

Vorobjev Y N, Hermans J

机构信息

Department of Biochemistry and Biophysics, School of Medicine, University of North Carolina, Chapel Hill 27599-7260, USA.

出版信息

Biophys Chem. 1999 Apr 5;78(1-2):195-205. doi: 10.1016/s0301-4622(98)00230-0.

Abstract

This paper reviews a recently developed method for calculating the total conformational free energy of a solute macromolecule in water solvent. The method consists of a relatively short simulation by molecular dynamics with explicit solvent molecules (ES) to produce a set of microstates of the macroscopic conformation. Conformational internal solute energy and entropy are obtained from the simulation, the latter in the quasi-harmonic approximation by analysis of the covariance matrix. The implicit solvent (IS) surface energy-dielectric continuum model is used to calculate the average solvation free energy as the sum of the free energies of creating the solute-size hydrophobic cavity, of the van der Waals solute-solvent interactions and of the polarization of water solvent by the solute's charges. We have earlier applied this method to calculate the conformational free energy of native and intentionally misfolded globular conformations of proteins (the EMBL set of deliberately misfolded proteins), and have obtained good discrimination in favor of the native conformations in all instances. These results are summarized and further analyzed to show that, on average, three major component terms of the free energy all contribute in favor of discrimination. We discuss possible improvements of the ES/IS method. It is shown how the force field can be made self-consistent by adapting the parameters for calculation of surface and polarization free energies closely to the molecular mechanics force field used in the dynamics simulation, using established simulation methods to compute free energies for cavity formation and a charging process with the molecular mechanics force field to provide a set of (quasi-experimental) reference data that can be used to refine the parameters of the continuum models. The molecular surface area together with a microscopic surface free energy near 70 cal/(mol A2) is found to be a consistent descriptor of the cavity free energy. Preliminary results indicate that a linear-response approximation for the polarization of water solvent reaction near typical polar and charged protein groups is accurate to within approximately 90%.

摘要

本文综述了一种最近开发的用于计算水溶剂中溶质大分子总构象自由能的方法。该方法包括通过分子动力学对明确的溶剂分子(ES)进行相对较短的模拟,以产生宏观构象的一组微观状态。从模拟中获得构象内部溶质能量和熵,后者通过协方差矩阵分析以准谐波近似得到。隐式溶剂(IS)表面能-介电连续介质模型用于计算平均溶剂化自由能,其为创建溶质大小的疏水腔的自由能、范德华溶质-溶剂相互作用的自由能以及溶质电荷对水溶剂极化的自由能之和。我们之前已应用此方法计算蛋白质天然和故意错误折叠的球状构象(故意错误折叠蛋白质的EMBL集)的构象自由能,并在所有情况下都获得了有利于天然构象的良好区分度。总结并进一步分析了这些结果,以表明平均而言,自由能的三个主要组成项都有助于区分。我们讨论了ES/IS方法可能的改进。展示了如何通过使表面和极化自由能计算的参数紧密适应动力学模拟中使用的分子力学力场,使力场自洽,使用既定的模拟方法计算腔形成的自由能,并使用分子力学力场进行充电过程以提供一组(准实验)参考数据,可用于优化连续介质模型的参数。发现分子表面积以及接近70 cal/(mol Ų)的微观表面自由能是腔自由能的一致描述符。初步结果表明,对于典型极性和带电蛋白质基团附近水溶剂反应极化的线性响应近似在约90%的精度范围内是准确的。

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