论文标题

评估位置依赖性的扩散与马尔可夫状态模型分析

Assessing Position-Dependent Diffusion from Biased Simulations and Markov State Model Analysis

论文作者

Sicard, Francois, Koskin, Vladimir, Annibale, Alessia, Rosta, Edina

论文摘要

现在,通常使用多种增强的统计和数值方法来从密集的分子模拟中获得的大量复杂的高维数据中提取可理解和相关的热力学信息。另一方面,具有显着高能量屏障的分子系统的动力学特性(例如扩散系数)的表征较少。除其他外,马尔可夫州模型在近年来,马尔可夫链在配置空间的离散分区上近似于系统的长期统计动力学,以解决这些基本问题。在这里,我们提出了一种一般的自动方法,以评估马尔可夫随机过程和kramers-Moyal膨胀框架内的多维位置扩散系数。我们将形式主义应用于明确的溶剂分子动力学模拟中的一维分析势和数据,包括丙氨酸二肽的水介导的构象。重要的是,与标准方法相比,当研究溶质在三维异质性多孔培养基中的运输时,开发的Algortihm进行了显着改善,例如,在药物分子的膜渗透中的预测。

A variety of enhanced statistical and numerical methods are now routinely used to extract comprehensible and relevant thermodynamic information from the vast amount of complex, high-dimensional data obtained from intensive molecular simulations. The characterization of kinetic properties, such as diffusion coefficients, of molecular systems with significantly high energy barriers, on the other hand, has received less attention. Among others, Markov state models, in which the long-time statistical dynamics of a system is approximated by a Markov chain on a discrete partition of configuration space, have seen widespread use in recent years, with the aim of tackling these fundamental issues. Here we propose a general, automatic method to assess multidimensional position-dependent diffusion coefficients within the framework of Markovian stochastic processes and Kramers-Moyal expansion. We apply the formalism to one- and two-dimensional analytic potentials and data from explicit solvent molecular dynamics simulations, including the water-mediated conformations of alanine dipeptide. Importantly, the developed algortihm presents significant improvement compared to standard methods when the transport of solute across three-dimensional heterogeneous porous media is studied, for example, the prediction of membrane permeation of drug molecules.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源