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Deflation reveals dynamical structure in nondominant reaction coordinates

机译:放气显示Nondominant反应坐标中的动态结构

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The output of molecular dynamics simulations is high-dimensional, and the degrees of freedom among the atoms are related in intricate ways. Therefore, a variety of analysis frameworks have been introduced in order to distill complex motions into lower-dimensional representations that model the system dynamics. These dynamical models have been developed to optimally approximate the system's global kinetics. However, the separate aims of optimizing global kinetics and modeling a process of interest diverge when the process of interest is not the slowest process in the system. Here, we introduce deflation into state-of-the-art methods in molecular kinetics in order to preserve the use of variational optimization tools when the slowest dynamical mode is not the same as the one we seek to model and understand. First, we showcase deflation for a simple toy system and introduce the deflated variational approach to Markov processes (dVAMP). Using dVAMP, we show that nondominant reaction coordinates produced using deflation are more informative than their counterparts generated without deflation. Then, we examine a protein folding system in which the slowest dynamical mode is not folding. Following a dVAMP analysis, we show that deflation can be used to obscure this undesired slow process from a kinetic model; in this case, a VAMPnet. The incorporation of deflation into current methods opens the door for enhanced sampling strategies and more flexible, targeted model building. Published under license by AIP Publishing.
机译:分子动力学模拟的输出是高维的,原子之间的自由度以错综复杂的方式相关。因此,已经引入了各种分析框架,以便将复杂的运动蒸馏成模型系统动态的低维表示。已经开发出这些动态模型,以最佳地近似于系统的全球动力学。然而,当感兴趣的过程不是系统中的最慢的过程时,单独的目的是优化全球动力学和建模感兴趣的过程。在这里,我们在分子动力学中引入最先进的方法,以便在最慢的动态模式与我们寻求模型和理解的情况下,保持变分优化工具的使用。首先,我们展示简单玩具系统的通货紧缩,并引入了Markov进程(DVAMP)的流动变分方法。使用DVAMP,我们表明使用放气产生的非常规反应坐标比没有放气产生的对应物更具信息性。然后,我们检查一种蛋白质折叠系统,其中动态模式最慢不会折叠。在DVAMP分析之后,我们表明放气可用于从动力学模型中掩盖这种不期望的缓慢过程;在这种情况下,vampnet。将通货紧缩纳入当前方法打开门,以增强采样策略和更灵活的目标模型建筑。通过AIP发布在许可证下发布。

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