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High-Throughput All-Atom Molecular Dynamics Simulations Using Distributed Computing

delete2010-03-03
delete176
PRE
AI
I
Ignasi Buch
M
M J Harvey
T
Toni Giorgino
D
David P. Anderson
G
Gianni De Fabritiis *
DOI:10.1021/ci900455rdelete
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摘要

摘要

En 中文
Although molecular dynamics simulation methods are useful in the modeling of macromolecular systems, they remain computationally expensive, with production work requiring costly high-performance computing (HPC) resources. We review recent innovations in accelerating molecular dynamics on graphics processing units (GPUs), and we describe GPUGRID, a volunteer computing project that uses the GPU resources of nondedicated desktop and workstation computers. In particular, we demonstrate the capability of simulating thousands of all-atom molecular trajectories generated at an average of 20 ns/day each (for systems of similar to 30 000-80 000 atoms). In conjunction with a potential of mean force (PMF) protocol for computing binding free energies, we demonstrate the use of GPUGRID in the computation of accurate binding affinities of the Src SH2 domain/pYEEI ligand complex by reconstructing the PMF over 373 umbrella sampling windows of 55 ns each (20.5 mu s of total data). We obtain a standard free energy of binding of -8.7 +/- 0.4 kcal/mol within 0.7 kcal/mol from experimental results. This infrastructure will provide the basis for a robust system for high-throughput accurate binding affinity prediction.
Keyword:
FREE-ENERGY
SH2 DOMAIN
BINDING
LIGAND
ENERGETICS

期刊

Journal of Chemical Information and Modeling 封面图
Journal of Chemical Information and Modeling
IF:
5.3
论文数:
9.1K
被引数:
4.0W

机构

University of California System 封面图
University of California System
学者数:
37.5W
论文数: 33.7W
被引数: 6.6K
P
Pompeu Fabra University
学者数:
9.3K
论文数: 6.8K
被引数: 11
I
Imperial College London
学者数:
8.3W
论文数: 7.3W
被引数: 11.1W
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