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从分子动力学轨迹的马尔可夫状态模型看 Met-enkephalin 的转变途径。

Transition paths of Met-enkephalin from Markov state modeling of a molecular dynamics trajectory.

机构信息

Department of Chemistry, Michigan State University , East Lansing, Michigan 48824, United States.

出版信息

J Phys Chem B. 2014 Mar 20;118(11):2883-95. doi: 10.1021/jp412130d. Epub 2014 Mar 10.

Abstract

Conformational states and their interconversion pathways of the zwitterionic form of the pentapeptide Met-enkephalin (MetEnk) are identified. An explicit solvent molecular dynamics (MD) trajectory is used to construct a Markov state model (MSM) based on dihedral space clustering of the trajectory, and transition path theory (TPT) is applied to identify pathways between open and closed conformers. In the MD trajectory, only four of the eight backbone dihedrals exhibit bistable behavior. Defining a conformer as the string XXXX with X = "+" or "-" denoting, respectively, positive or negative values of a given dihedral angle and obtaining the populations of these conformers shows that only four conformers are highly populated, implying a strong correlation among these dihedrals. Clustering in dihedral space to construct the MSM finds the same four bistable dihedral angles. These state populations are very similar to those found directly from the MD trajectory. TPT is used to obtain pathways, parametrized by committor values, in dihedral state space that are followed in transitioning from closed to open states. Pathway costs are estimated by introducing a kinetics-based procedure that orders pathways from least (shortest) to greater cost paths. The least costly pathways in dihedral space are found to only involve the same XXXX set of dihedral angles, and the conformers accessed in the closed to open transition pathways are identified. For these major pathways, a correlation between reaction path progress (committors) and the end-to-end distance is identified. A dihedral space principal component analysis of the MD trajectory shows that the first three modes capture most of the overall fluctuation, and pick out the same four dihedrals having essentially all the weight in those modes. A MSM based on root-mean-square backbone clustering was also carried out, with good agreement found with dihedral clustering for the static information, but with results that differ significantly for the pathway analysis.

摘要

鉴定了五肽 Met-enkephalin(MetEnk)两性离子形式的构象状态及其转换途径。使用显式溶剂分子动力学(MD)轨迹基于轨迹的二面角空间聚类构建马尔可夫状态模型(MSM),并应用转移路径理论(TPT)识别开构象和闭构象之间的途径。在 MD 轨迹中,只有八个骨架二面角中的四个表现出双稳态行为。将构象定义为字符串 XXXX,其中 X = "+"或"-"分别表示给定二面角的正值或负值,并获得这些构象的种群,表明只有四个构象高度占据,表明这些二面角之间存在很强的相关性。在二面角空间中进行聚类以构建 MSM 发现了相同的四个双稳态二面角。这些状态的种群与直接从 MD 轨迹中获得的种群非常相似。TPT 用于在二面角状态空间中获得参数化的通道,这些通道遵循从封闭状态到开放状态的转变。通过引入基于动力学的程序来对途径进行排序,从最小(最短)到更大成本途径,估计途径成本。在二面角空间中发现,最不昂贵的途径仅涉及相同的 XXXX 组二面角,并且确定了在封闭到开放转变途径中访问的构象。对于这些主要途径,识别了反应途径进展(占据者)与末端到末端距离之间的相关性。对 MD 轨迹进行二面角空间主成分分析表明,前三个模式捕获了大部分总体波动,并挑选出具有这些模式中所有权重的相同四个二面角。还进行了基于均方根骨干聚类的 MSM,与二面角聚类在静态信息方面具有很好的一致性,但在途径分析方面的结果有很大差异。

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