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从有偏模拟中计算动力学速率和膜通透性。

Calculating Kinetic Rates and Membrane Permeability from Biased Simulations.

机构信息

Department of Chemistry , King's College London , SE1 1DB London , United Kingdom.

Department of Physics , King's College London , WC2R 2LS London , United Kingdom.

出版信息

J Phys Chem B. 2018 Dec 13;122(49):11571-11578. doi: 10.1021/acs.jpcb.8b07442. Epub 2018 Oct 22.

Abstract

We present a simple approach to calculate the kinetic properties of lipid membrane crossing processes from biased molecular dynamics simulations. We demonstrate that by using biased simulations, one can obtain highly accurate kinetic information with significantly reduced computational time with respect to unbiased simulations. We describe how to conveniently calculate the transition rates to enter, cross, and exit the membrane in terms of the mean first passage times. To obtain free energy barriers and relaxation times from biased simulations only, we constructed Markov models using the dynamic histogram analysis method (DHAM). The permeability coefficients that are calculated from the relaxation times are found to correlate highly with experimentally evaluated values. We show that more generally, certain calculated kinetic properties linked to the crossing of the membrane layer (e.g., barrier height and barrier crossing rates) are good indicators of ordering drugs by permeability. Extending the analysis to a 2D Markov model provides a physical description of the membrane crossing mechanism.

摘要

我们提出了一种简单的方法,可从有偏分子动力学模拟中计算脂质膜穿越过程的动力学性质。我们证明,通过使用有偏模拟,可以相对于无偏模拟以显著减少的计算时间获得高度准确的动力学信息。我们描述了如何方便地根据平均首次通过时间来计算进入、穿越和离开膜的跃迁率。为了仅从有偏模拟中获得自由能势垒和弛豫时间,我们使用动态直方图分析方法(DHAM)构建了马尔可夫模型。从弛豫时间计算得出的渗透率系数与实验评估值高度相关。我们表明,更一般地说,与膜层穿越相关的某些计算动力学性质(例如势垒高度和势垒穿越速率)是通过渗透率对药物进行排序的良好指标。将分析扩展到二维马尔可夫模型为膜穿越机制提供了物理描述。

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