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耦合参考相互作用位点模型/分子动力学在丙氨酸二肽构象分析中的应用。

An application of coupled reference interaction site model/molecular dynamics to the conformational analysis of the alanine dipeptide.

作者信息

Freedman Holly, Truong Thanh N

机构信息

Henry Eyring Center for Theoretical Chemistry, Department of Chemistry, University of Utah, Salt Lake City, Utah 84112, USA.

出版信息

J Chem Phys. 2004 Dec 22;121(24):12447-56. doi: 10.1063/1.1818046.

Abstract

We present an application of our recently proposed coupled reference interaction site model (RISM) molecular dynamics (MD) solvation free energy methodology [Freedman and Truong, Chem. Phys. Lett. 381, 362 (2003); J. Chem. Phys. 121, 2187 (2004)] to study the conformational stability of alanine dipeptide in aqueous solution. In this methodology, radial distribution functions obtained from a single MD simulation are substituted into a RISM expression for solvation free energy. Consequently, iterative solution of the RISM equation is not needed. The relative solvation free energies of seven different conformations of the alanine dipeptide in aqueous solution are calculated. Results from the coupled RISM/MD methodology are in good agreement with those from earlier simulations using the accurate free energy perturbation approach, showing that the alphaR conformation is most stabilized by solution. This study establishes a framework for applying this coupled RISM/MD method to larger biological systems.

摘要

我们展示了我们最近提出的耦合参考相互作用位点模型(RISM)分子动力学(MD)溶剂化自由能方法[弗里德曼和特鲁昂,《化学物理快报》381, 362 (2003); 《化学物理杂志》121, 2187 (2004)]的一种应用,用于研究丙氨酸二肽在水溶液中的构象稳定性。在这种方法中,从单个MD模拟获得的径向分布函数被代入到用于溶剂化自由能的RISM表达式中。因此,不需要对RISM方程进行迭代求解。计算了丙氨酸二肽在水溶液中七种不同构象的相对溶剂化自由能。耦合RISM/MD方法的结果与早期使用精确自由能微扰方法的模拟结果非常吻合,表明αR构象在溶液中最稳定。这项研究为将这种耦合RISM/MD方法应用于更大的生物系统建立了一个框架。

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