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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Nontargeted Parallel Cascade Selection Molecular Dynamics Using Time-Localized Prediction of Conformational Transitions in Protein Dynamics
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Nontargeted Parallel Cascade Selection Molecular Dynamics Using Time-Localized Prediction of Conformational Transitions in Protein Dynamics

机译:使用蛋白质动态中的综合转变的时间局限性预测,不设平行的级联选择分子动力学

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Nontargeted parallel cascade selection molecular dynamics (nt-PaCS-MD) is an enhanced conformational sampling method of proteins, which does not rely on knowledge of the target structure. It makes use of cyclic resampling from some relevant initial structures to expand the searched conformational subspace. The efficiency of nt-PaCS-MD depends on the selections of these initial structures. They are usually stochastically occurring perturbed structures at which larger conformation transitions are about to happen. Reliable identification of these is the key to using nt-PaCS-MD. Two new parameters, the moving root-mean-square deviation (mRMSD) and the inner products of the backbone dihedral angles Phi and Psi, are introduced as indicators of conformational outliers in MD trajectories. Both are based on the analysis of a time-localized set of coordinates, overcoming the need for a target structure while still capturing the complexity of the conformational transition. The reference to which the mRMSD relates is the close surrounding of the i-th conformation, often the (i-1)st one. Hence the name "time-localized" analysis. In this work, we focus on its interplay with nt-PaCS-MD and show that it increases its effectiveness compared to older versions. The target system is the midsized protein T4 lysozyme (in explicit water) on which we demonstrate the open-closed transition without referring to any target configuration. Additionally, we show that the short MD trajectories can be used for the construction of a free energy landscape of the conformational transition based on the Markov state model.
机译:不设定的并行级联选择分子动力学(NT-PACS-MD)是蛋白质的增强构象取样方法,不依赖于目标结构的知识。它利用来自某些相关初始结构的循环重采样来扩展搜索到的构象子空间。 NT-PACS-MD的效率取决于这些初始结构的选择。它们通常是随机发生的扰动结构,在该扰动结构中即将发生更大的构象转变。可靠的识别这些是使用NT-PACS-MD的关键。两个新的参数,移动的根均方偏差(MRMSD)和骨干二面角角φ和PSI的内部产品被引入MD轨迹中的构象异常值的指标。两者都基于对时间局部坐标的分析,克服目标结构的需要,同时仍捕获构象转变的复杂性。 MRMSD相关的参考是第i次构象的紧密周围,通常是(I-1)ST一体化。因此,“时间本地化”分析。在这项工作中,我们专注于与NT-PACS-MD相互作用,并表明它与旧版本相比增加了其有效性。目标系统是中型蛋白质T4溶菌酶(在明确水中),我们在不参考任何目标配置的情况下展示开孔过渡。此外,我们表明,短MD轨迹可用于基于马尔可夫状态模型的构象转换的自由能景观。

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