时间分辨力分布分析。

Q1 Biochemistry, Genetics and Molecular Biology
Bogdan I Costescu, Frauke Gräter
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引用次数: 53

摘要

背景:生物分子或其他复杂的大分子在暴露于外部扰动(如配体结合或机械力)时发生构象转变。为了跟踪在分子动力学(MD)模拟中观察到的构象变化过程中原子或残基之间的成对力的波动,我们开发了时间分辨力分布分析(TRFDA)。结果:该实现侧重于计算效率和低内存使用,以及广泛的输出选项,使得长MD模拟和大分子系统的成对力变化的时间序列分析成为可能。它还提供了由3体和4体电位产生的成对力的精确分解,以及原子或残基之间成对力的统一处理。作为概念的证明,我们提出了一个应力分析期间展开泛素在力钳MD模拟。结论:TRFDA可用于跟踪原子水平上的信号传播,表征动态分子间相互作用(如柔性对接过程中的蛋白质-配体),力场的发展以及构象变化过程中的应力分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Time-resolved force distribution analysis.

Time-resolved force distribution analysis.

Background: Biomolecules or other complex macromolecules undergo conformational transitions upon exposure to an external perturbation such as ligand binding or mechanical force. To follow fluctuations in pairwise forces between atoms or residues during such conformational changes as observed in Molecular Dynamics (MD) simulations, we developed Time-Resolved Force Distribution Analysis (TRFDA).

Results: The implementation focuses on computational efficiency and low-memory usage and, along with the wide range of output options, makes possible time series analysis of pairwise forces variation in long MD simulations and for large molecular systems. It also provides an exact decomposition of pairwise forces resulting from 3- and 4-body potentials and a unified treatment of pairwise forces between atoms or residues. As a proof of concept, we present a stress analysis during unfolding of ubiquitin in a force-clamp MD simulation.

Conclusions: TRFDA can be used, among others, in tracking signal propagation at atomic level, for characterizing dynamical intermolecular interactions (e.g. protein-ligand during flexible docking), in development of force fields and for following stress distribution during conformational changes.

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来源期刊
BMC Biophysics
BMC Biophysics BIOPHYSICS-
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>12 weeks
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