首页> 外文期刊>Journal of chemical theory and computation: JCTC >Enhanced Conformational Sampling Using Replica Exchange with Concurrent Solute Scaling and Hamiltonian Biasing Realized in One Dimension
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Enhanced Conformational Sampling Using Replica Exchange with Concurrent Solute Scaling and Hamiltonian Biasing Realized in One Dimension

机译:使用一维并行副本缩放和哈密顿偏向实现副本交换的增强构象采样

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摘要

Replica exchange (REX) is a powerful computational tool for overcoming the quasi-ergodic sampling problem of complex molecular systems. Recently, several multidimensional extensions of this method have been developed to realize exchanges in both temperature and biasing potential, space or the use of multiple biasing potentials to improve sampling efficiency. However, increased computational cost due to the multidimensionality of exchanges becomes challenging for use on complex systems under explicit solvent conditions. In this study, we develop a one-dimensional (1D) REX algorithm to concurrently combine the advantages of overall enhanced sampling from Hamiltonian solute scaling and the specific enhancement of collective variables using Hamiltonian biasing potentials. In the present Hamiltonian replica exchange method, termed HREST-BP, Hamiltonian solute scaling is applied to the solute subsystem, and its interactions with the environment to enhance overall conformational transitions and biasing potentials are added along selected collective variables associated with specific conformational transitions, thereby balancing the sampling of different hierarchical degrees of freedom. The two enhanced sampling approaches are implemented concurrently allowing for the use of a small number of replicas (e.g., 6 to 8) in 1D, thus greatly reducing the computational cost in complex system simulations. The present method is applied to conformational sampling of two nitrogen-linked glycans (N-glycans) found on the HIV gp120 envelope protein. Considering the general importance of the conformational sampling problem, HREST-BP represents an efficient procedure for the study of complex saccharides, and, more generally, the method is anticipated to be of general utility for the conformational sampling in a wide range of macromolecular systems.
机译:副本交换(REX)是一种功能强大的计算工具,可以解决复杂分子系统的拟遍历采样问题。最近,已经开发了该方法的多个多维扩展,以实现温度和偏置电势,空间上的交换或使用多个偏置电势来提高采样效率。但是,由于交换的多维性,增加的计算成本对于在显式溶剂条件下的复杂系统上使用变得具有挑战性。在这项研究中,我们开发了一种一维(1D)REX算法,以同时结合汉密尔顿溶质标度的整体增强采样的优势和使用汉密尔顿偏电势的集体变量的特定增强。在目前称为HREST-BP的哈密顿量副本交换方法中,将哈密顿量溶质标度应用于溶质子系统,并沿着与特定构象转变相关的选定集合变量添加其与环境的相互作用以增强总体构象转变和偏向势。平衡不同等级自由度的采样。同时实现两种增强的采样方法,从而允许在一维中使用少量副本(例如6到8个),从而大大降低了复杂系统仿真中的计算成本。本方法适用于在HIV gp120包膜蛋白上发现的两个氮连接的聚糖(N-聚糖)的构象采样。考虑到构象采样问题的一般重要性,HREST-BP代表了一种研究复杂糖类的有效方法,并且更普遍地,该方法有望在广泛的大分子系统中用于构象采样。

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