复制品
统计物理学
分子动力学
亚稳态
相变
折叠(DSP实现)
成核
动能
动力学
马尔可夫链
物理
计算机科学
化学物理
化学
热力学
计算化学
经典力学
电气工程
机器学习
工程类
量子力学
艺术
视觉艺术
作者
Lukas S. Stelzl,Gerhard Hummer
标识
DOI:10.1021/acs.jctc.7b00372
摘要
Transitions between metastable states govern many fundamental processes in physics, chemistry and biology, from nucleation events in phase transitions to the folding of proteins. The free energy surfaces underlying these processes can be obtained from simulations using enhanced sampling methods. However, their altered dynamics makes kinetic and mechanistic information difficult or impossible to extract. Here, we show that, with replica exchange molecular dynamics (REMD), one can not only sample equilibrium properties but also extract kinetic information. For systems that strictly obey first-order kinetics, the procedure to extract rates is rigorous. For actual molecular systems whose long-time dynamics are captured by kinetic rate models, accurate rate coefficients can be determined from the statistics of the transitions between the metastable states at each replica temperature. We demonstrate the practical applicability of the procedure by constructing master equation (Markov state) models of peptide and RNA folding from REMD simulations.
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