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一种新的哈密顿量副本交换分子动力学方法对核酸构象采样的增强

Enhanced conformational sampling of nucleic acids by a new Hamiltonian replica exchange molecular dynamics approach.

作者信息

Curuksu Jeremy, Zacharias Martin

机构信息

School of Engineering and Science, Jacobs University, Campus Ring 1, D-28759 Bremen, Germany.

出版信息

J Chem Phys. 2009 Mar 14;130(10):104110. doi: 10.1063/1.3086832.

Abstract

Although molecular dynamics (MD) simulations have been applied frequently to study flexible molecules, the sampling of conformational states separated by barriers is limited due to currently possible simulation time scales. Replica-exchange (Rex)MD simulations that allow for exchanges between simulations performed at different temperatures (T-RexMD) can achieve improved conformational sampling. However, in the case of T-RexMD the computational demand grows rapidly with system size. A Hamiltonian RexMD method that specifically enhances coupled dihedral angle transitions has been developed. The method employs added biasing potentials as replica parameters that destabilize available dihedral substates and was applied to study coupled dihedral transitions in nucleic acid molecules. The biasing potentials can be either fixed at the beginning of the simulation or optimized during an equilibration phase. The method was extensively tested and compared to conventional MD simulations and T-RexMD simulations on an adenine dinucleotide system and on a DNA abasic site. The biasing potential RexMD method showed improved sampling of conformational substates compared to conventional MD simulations similar to T-RexMD simulations but at a fraction of the computational demand. It is well suited to study systematically the fine structure and dynamics of large nucleic acids under realistic conditions including explicit solvent and ions and can be easily extended to other types of molecules.

摘要

尽管分子动力学(MD)模拟已被频繁用于研究柔性分子,但由于目前可能的模拟时间尺度,由势垒分隔的构象状态的采样受到限制。允许在不同温度下进行的模拟之间进行交换的副本交换(Rex)MD模拟(T-RexMD)可以实现改进的构象采样。然而,在T-RexMD的情况下,计算需求随着系统规模迅速增长。已经开发了一种专门增强耦合二面角跃迁的哈密顿RexMD方法。该方法采用添加的偏置势作为副本参数,使可用的二面角子状态不稳定,并应用于研究核酸分子中的耦合二面角跃迁。偏置势可以在模拟开始时固定,也可以在平衡阶段进行优化。该方法在腺嘌呤二核苷酸系统和DNA无碱基位点上进行了广泛测试,并与传统MD模拟和T-RexMD模拟进行了比较。与传统MD模拟相比,偏置势RexMD方法显示出对构象子状态的采样有所改进,类似于T-RexMD模拟,但计算需求仅为其一小部分。它非常适合在包括明确溶剂和离子的现实条件下系统地研究大型核酸的精细结构和动力学,并且可以很容易地扩展到其他类型的分子。

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