分子动力学
生物分子
朗之万动力
核糖核酸
堆积
折叠(DSP实现)
化学
高斯分布
化学物理
生物系统
计算化学
统计物理学
纳米技术
材料科学
物理
生物
生物化学
有机化学
工程类
电气工程
基因
作者
Matthew M. Copeland,N. Hung,Lane W. Votapka,Keya Joshi,Jinan Wang,Rommie E. Amaro,Yinglong Miao
标识
DOI:10.1021/acs.jpcb.2c03765
摘要
Gaussian accelerated molecular dynamics (GaMD) is a computational technique that provides both unconstrained enhanced sampling and free energy calculations of biomolecules. Here, we present the implementation of GaMD in the OpenMM simulation package and validate it on model systems of alanine dipeptide and RNA folding. For alanine dipeptide, 30 ns GaMD production simulations reproduced free energy profiles of 1000 ns conventional molecular dynamics (cMD) simulations. In addition, GaMD simulations captured the folding pathways of three hyperstable RNA tetraloops (UUCG, GCAA, and CUUG) and binding of the rbt203 ligand to the HIV-1 Tar RNA, both of which involved critical electrostatic interactions such as hydrogen bonding and base stacking. Together with previous implementations, GaMD in OpenMM will allow for wider applications in simulations of proteins, RNA, and other biomolecules.
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