图拉真:一个分析分子模拟轨迹的工具

Graham A. Worth , Christophe Lecuyer, Rebecca C. Wade ∗
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引用次数: 3

摘要

众所周知,生物系统的分子动力学模拟很难分析,因为它们包含的信息非常复杂。我们描述了一种从仿真中分析轨迹的新方法,以提取运动的重要特征。每个原子的运动轨迹被划分为若干个构象阱,在每个构象阱中,原子的运动假定主要是围绕一个平均位置的谐振振荡。因此,每个原子在轨迹中通过一系列阱进行非谐运动。原子在井间的运动,它们在每个井内的运动椭球,以及原子运动中的相关性都是量化的,并且可以用分子图来可视化。TRAJAN分析程序适用于平衡和非平衡模拟的轨迹,并不局限于分子动力学模拟。它的应用演示了一系列的模型系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TRAJAN: A tool for analyzing trajectories from molecular simulations

Molecular dynamics simulations of biological systems are notoriously difficult to analyze because of the complexity of the information that they contain. We describe a new method for analyzing trajectories from simulations in order to extract important features of the motion. The trajectory of each atom is partitioned into conformation wells, in each of which its motion is assumed to be predominantly harmonic oscillation around an average position. Thus each atom moves anharmonically through a sequence of wells during the trajectory. The movement of atoms between wells, their ellipsoids of motion within each well, and correlations in the motion of atoms are quantified and can be visualized with molecular graphics. The TRAJAN analysis procedure is applicable to trajectories from equilibrium and nonequilibrium simulations and is not restricted to molecular dynamics simulations. Its application is demonstrated for a range of model systems.

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