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GPU-Accelerated Drug Discovery with Docking on the Summit Supercomputer: Porting, Optimization, and Application to COVID-19 Research.

Authors :
LeGrand S
Scheinberg A
Tillack AF
Thavappiragasam M
Vermaas JV
Agarwal R
Larkin J
Poole D
Santos-Martins D
Solis-Vasquez L
Koch A
Forli S
Hernandez O
Smith JC
Sedova A
Source :
ArXiv [ArXiv] 2020 Jul 06. Date of Electronic Publication: 2020 Jul 06.
Publication Year :
2020

Abstract

Protein-ligand docking is an in silico tool used to screen potential drug compounds for their ability to bind to a given protein receptor within a drug-discovery campaign. Experimental drug screening is expensive and time consuming, and it is desirable to carry out large scale docking calculations in a high-throughput manner to narrow the experimental search space. Few of the existing computational docking tools were designed with high performance computing in mind. Therefore, optimizations to maximize use of high-performance computational resources available at leadership-class computing facilities enables these facilities to be leveraged for drug discovery. Here we present the porting, optimization, and validation of the AutoDock-GPU program for the Summit supercomputer, and its application to initial compound screening efforts to target proteins of the SARS-CoV-2 virus responsible for the current COVID-19 pandemic.

Details

Language :
English
ISSN :
2331-8422
Database :
MEDLINE
Journal :
ArXiv
Accession number :
32676519