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首页> 外文期刊>The Journal of Chemical Physics >Communication: Multiple atomistic force fields in a single enhanced sampling simulation
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Communication: Multiple atomistic force fields in a single enhanced sampling simulation

机译:交流:单个增强的采样模拟中的多个原子力场

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摘要

The main concerns of biomolecular dynamics simulations are the convergence of the conformational sampling and the dependence of the results on the force fields. While the first issue can be addressed by employing enhanced sampling techniques such as simulated tempering or replica exchange molecular dynamics, repeating these simulations with different force fields is very time consuming. Here, we propose an automatic method that includes different force fields into a single advanced sampling simulation. Conformational sampling using three all-atom force fields is enhanced by simulated tempering and by formulating the weight parameters of the simulated tempering method in terms of the energy fluctuations, the system is able to perform random walk in both temperature and force field spaces. The method is first demonstrated on a 1D system and then validated by the folding of the 10-residue chignolin peptide in explicit water. (C) 2015 AIP Publishing LLC.
机译:生物分子动力学模拟的主要关注点是构象采样的收敛以及结果对力场的依赖性。尽管可以通过采用增强的采样技术(例如模拟回火或副本交换分子动力学)来解决第一个问题,但是以不同的力场重复这些模拟非常耗时。在这里,我们提出了一种自动方法,该方法将不同的力场包括在单个高级采样模拟中。通过模拟回火并通过根据能量波动制定模拟回火方法的权重参数来增强使用三个全原子力场的构象采样,该系统能够在温度和力场空间中执行随机游动。该方法首先在一维系统上得到证明,然后通过将10个残基的厚朴素肽在纯净水中折叠来验证。 (C)2015 AIP Publishing LLC。

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