Methods for Monte Carlo simulations of biomacromolecules.

Andreas Vitalis, Rohit V Pappu
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引用次数: 103

Abstract

The state-of-the-art for Monte Carlo (MC) simulations of biomacromolecules is reviewed. Available methodologies for sampling conformational equilibria and associations of biomacromolecules in the canonical ensemble, given a continuum description of the solvent environment, are reviewed. Detailed sections are provided dealing with the choice of degrees of freedom, the efficiencies of MC algorithms and algorithmic peculiarities, as well as the optimization of simple movesets. The issue of introducing correlations into elementary MC moves, and the applicability of such methods to simulations of biomacromolecules is discussed. A brief discussion of multicanonical methods and an overview of recent simulation work highlighting the potential of MC methods are also provided. It is argued that MC simulations, while underutilized biomacromolecular simulation community, hold promise for simulations of complex systems and phenomena that span multiple length scales, especially when used in conjunction with implicit solvation models or other coarse graining strategies.

生物大分子的蒙特卡罗模拟方法。
综述了生物大分子蒙特卡罗模拟的最新进展。在给出溶剂环境的连续描述的情况下,综述了在正则系综中采样生物大分子构象平衡和缔合的可用方法。提供了详细的章节,涉及自由度的选择、MC算法的效率和算法特性,以及简单动集的优化。讨论了在基本MC移动中引入相关性的问题,以及这种方法在生物大分子模拟中的适用性。还简要讨论了多正则方法,并概述了最近的模拟工作,强调了MC方法的潜力。有人认为,MC模拟虽然未得到充分利用,但有望模拟跨越多个长度尺度的复杂系统和现象,尤其是与隐式溶剂化模型或其他粗粒度策略结合使用时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.50
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0.00%
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