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使用副本交换分子动力学研究脑啡肽在显性水溶液中的结构。

Structure of Met-enkephalin in explicit aqueous solution using replica exchange molecular dynamics.

作者信息

Sanbonmatsu K Y, García A E

机构信息

Los Alamos National Laboratory, Los Alamos, New Mexico, USA.

出版信息

Proteins. 2002 Feb 1;46(2):225-34. doi: 10.1002/prot.1167.

Abstract

Replica exchange molecular dynamics (MD) simulations of Met-enkephalin in explicit solvent reveal helical and nonhelical structures. Four predominant structures of Met-enkephalin are sampled with comparable probabilities (two helical and two nonhelical). The energy barriers between these configurations are low, suggesting that Met-enkephalin switches easily between configurations. This is consistent with the requirement that Met-enkephalin be sufficiently flexible to bind to several different receptors. Replica exchange simulations of 32 ns are shown to sample approximately five times more configurational space than constant temperature MD simulations of the same duration. The energy landscape for the replica exchange simulation is presented. A detailed study of replica trajectories demonstrates that the significant increases in temperature provided by the replica exchange technique enable transitions from nonhelical to helical structures that would otherwise be prevented by kinetic trapping. Met-enkephalin (Type Entrez Proteins; Value A61445; Service Entrez Proteins).

摘要

在显式溶剂中对甲硫氨酸脑啡肽进行的副本交换分子动力学(MD)模拟揭示了螺旋和非螺旋结构。甲硫氨酸脑啡肽的四种主要结构以相当的概率被采样(两种螺旋结构和两种非螺旋结构)。这些构型之间的能垒较低,这表明甲硫氨酸脑啡肽能够轻松地在不同构型之间转换。这与甲硫氨酸脑啡肽需要足够灵活以结合多种不同受体的要求相一致。结果表明,32纳秒的副本交换模拟所采样的构型空间比相同持续时间的恒温MD模拟大约多五倍。展示了副本交换模拟的能量景观。对副本轨迹的详细研究表明,副本交换技术所提供的显著温度升高能够实现从非螺旋结构到螺旋结构的转变,否则这种转变会因动力学捕获而被阻止。甲硫氨酸脑啡肽(Entrez蛋白质类型;值A61445;Entrez蛋白质服务)

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