首页> 外文期刊>The Journal of Chemical Physics >TIGER2 with solvent energy averaging (TIGER2A): An accelerated sampling method for large molecular systems with explicit representation of solvent
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TIGER2 with solvent energy averaging (TIGER2A): An accelerated sampling method for large molecular systems with explicit representation of solvent

机译:具有溶剂能量平均(TIGER2A)的TIGER2:一种用于大分子系统的加速采样方法,具有溶剂的明确表示

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The recently developed "temperature intervals with global exchange of replicas" (TIGER2) accelerated sampling method is found to have inaccuracies when applied to systems with explicit solvation. This inaccuracy is due to the energy fluctuations of the solvent, which cause the sampling method to be less sensitive to the energy fluctuations of the solute. In the present work, the problem of the TIGER2 method is addressed in detail and a modification to the sampling method is introduced to correct this problem. The modified method is called "TIGER2 with solvent energy averaging," or TIGER2A. This new method overcomes the sampling problem with the TIGER2 algorithm and is able to closely approximate Boltzmann-weighted sampling of molecular systems with explicit solvation. The difference in performance between the TIGER2 and TIGER2A methods is demonstrated by comparing them against analytical results for simple one-dimensional models, against replica exchange molecular dynamics (REMD) simulations for sampling the conformation of alanine dipeptide and the folding behavior of (AAQAA)(3) peptide in aqueous solution, and by comparing their performance in sampling the behavior of hen egg-white lysozyme in aqueous solution. The new TIGER2A method solves the problem caused by solvent energy fluctuations in TIGER2 while maintaining the two important characteristics of TIGER2, i.e., (1) using multiple replicas sampled at different temperature levels to help systems efficiently escape from local potential energy minima and (2) enabling the number of replicas used for a simulation to be independent of the size of the molecular system, thus providing an accelerated sampling method that can be used to efficiently sample systems considered too large for the application of conventional temperature REMD. (C) 2015 AIP Publishing LLC.
机译:当应用于具有明确溶剂化的系统时,发现最近开发的“具有全局副本副本的温度间隔”(TIGER2)加速采样方法不准确。这种不准确性是由于溶剂的能量波动引起的,这导致采样方法对溶质的能量波动不太敏感。在本工作中,将详细解决TIGER2方法的问题,并对采样方法进行了修改以纠正此问题。修改后的方法称为“具有溶剂能量平均的TIGER2”或TIGER2A。这种新方法克服了TIGER2算法的采样问题,并且能够通过显式溶剂化近似逼近分子系统的玻尔兹曼加权采样。通过将TIGER2和TIGER2A方法与简单的一维模型的分析结果进行比较,与用于采样丙氨酸二肽构象和(AAQAA)折叠行为的复制交换分子动力学(REMD)模拟进行比较,证明了TIGER2和TIGER2A方法之间的性能差异。 3)水溶液中的肽,并通过比较它们在采样鸡蛋清溶菌酶在水溶液中的行为时的性能。新的TIGER2A方法解决了TIGER2中溶剂能量波动引起的问题,同时保持了TIGER2的两个重要特征,即(1)使用在不同温度水平下采样的多个副本来帮助系统有效地逃脱局部势能最小值和(2)使用于仿真的复制品数量与分子系统的大小无关,从而提供了一种加速采样方法,可用于有效地采样被认为对于常规温度REMD应用而言太大的系统。 (C)2015 AIP Publishing LLC。

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