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一种高效的高斯加速分子动力学(GaMD)多级增强采样策略:应用于大型生物系统的可极化力场模拟

An Efficient Gaussian-Accelerated Molecular Dynamics (GaMD) Multilevel Enhanced Sampling Strategy: Application to Polarizable Force Fields Simulations of Large Biological Systems.

作者信息

Célerse Frédéric, Inizan Théo Jaffrelot, Lagardère Louis, Adjoua Olivier, Monmarché Pierre, Miao Yinglong, Derat Etienne, Piquemal Jean-Philip

机构信息

LCT, UMR 7616 CNRS, Sorbonne Université, Paris 75005, France.

IPCM, UMR 8232 CNRS, Sorbonne Université, Paris 75005, France.

出版信息

J Chem Theory Comput. 2022 Feb 8;18(2):968-977. doi: 10.1021/acs.jctc.1c01024. Epub 2022 Jan 26.

DOI:10.1021/acs.jctc.1c01024
PMID:35080892
Abstract

We introduce a novel multilevel enhanced sampling strategy grounded on Gaussian-accelerated Molecular Dynamics (GaMD). First, we propose a GaMD multi-GPUs-accelerated implementation within the Tinker-HP molecular dynamics package. We introduce the new "dual-water" mode and its use with the flexible AMOEBA polarizable force field. By adding harmonic boosts to the water stretching and bonding terms, it accelerates the solvent-solute interactions while enabling speedups, thanks to the use of fast multiple-time step integrators. To further reduce the time-to-solution, we couple GaMD to Umbrella Sampling (US). The GaMD─US/dual-water approach is tested on the 1D Potential of Mean Force (PMF) of the solvated CD2-CD58 system (168 000 atoms), allowing the AMOEBA PMF to converge within 1 kcal/mol of the experimental value. Finally, Adaptive Sampling (AS) is added, enabling AS-GaMD capabilities but also the introduction of the new Adaptive Sampling-US-GaMD (ASUS-GaMD) scheme. The highly parallel ASUS-GaMD setup decreases time to convergence by, respectively, 10 and 20 times, compared to GaMD-US and US. Overall, beside the acceleration of PMF computations, Tinker-HP now allows for the simultaneous use of Adaptive Sampling and GaMD-"dual water" enhanced sampling approaches increasing the applicability of polarizable force fields to large-scale simulations of biological systems.

摘要

我们介绍了一种基于高斯加速分子动力学(GaMD)的新型多级增强采样策略。首先,我们在Tinker-HP分子动力学软件包中提出了一种GaMD多GPU加速实现方案。我们引入了新的“双水”模式及其与灵活的AMOEBA可极化力场的结合使用。通过对水的拉伸和键合项添加谐波增强,它加速了溶剂-溶质相互作用,同时由于使用了快速多时间步积分器而实现了加速。为了进一步减少求解时间,我们将GaMD与伞形采样(US)相结合。GaMD-US/双水方法在溶剂化的CD2-CD58系统(168000个原子)的一维平均力势(PMF)上进行了测试,使AMOEBA PMF能够在实验值的1 kcal/mol范围内收敛。最后,添加了自适应采样(AS),实现了AS-GaMD功能,同时还引入了新的自适应采样-US-GaMD(ASUS-GaMD)方案。与GaMD-US和US相比,高度并行的ASUS-GaMD设置分别将收敛时间缩短了10倍和20倍。总体而言,除了加速PMF计算外,Tinker-HP现在还允许同时使用自适应采样和GaMD-“双水”增强采样方法,提高了可极化力场在生物系统大规模模拟中的适用性。

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