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. 2021 May 24;61(5):2124-2130.
doi: 10.1021/acs.jcim.1c00328. Epub 2021 Apr 22.

Implementation of the QUBE Force Field in SOMD for High-Throughput Alchemical Free-Energy Calculations

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Implementation of the QUBE Force Field in SOMD for High-Throughput Alchemical Free-Energy Calculations

Lauren Nelson et al. J Chem Inf Model. .

Abstract

The quantum mechanical bespoke (QUBE) force-field approach has been developed to facilitate the automated derivation of potential energy function parameters for modeling protein-ligand binding. To date, the approach has been validated in the context of Monte Carlo simulations of protein-ligand complexes. We describe here the implementation of the QUBE force field in the alchemical free-energy calculation molecular dynamics simulation package SOMD. The implementation is validated by demonstrating the reproducibility of absolute hydration free energies computed with the QUBE force field across the SOMD and GROMACS software packages. We further demonstrate, by way of a case study involving two series of non-nucleoside inhibitors of HIV-1 reverse transcriptase, that the availability of QUBE in a modern simulation package that makes efficient use of graphics processing unit acceleration will facilitate high-throughput alchemical free-energy calculations.

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