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VMD as a Platform for Interactive Small Molecule Preparation and Visualization in Quantum and Classical Simulations.

Authors :
Spivak M
Stone JE
Ribeiro J
Saam J
Freddolino L
Bernardi RC
Tajkhorshid E
Source :
Journal of chemical information and modeling [J Chem Inf Model] 2023 Aug 14; Vol. 63 (15), pp. 4664-4678. Date of Electronic Publication: 2023 Jul 28.
Publication Year :
2023

Abstract

Modeling and simulation of small molecules such as drugs and biological cofactors have been both a major focus of computational chemistry for decades and a growing need among computational biophysicists who seek to investigate the interaction of different types of ligands with biomolecules. Of particular interest in this regard are quantum mechanical (QM) calculations that are used to more accurately describe such small molecules, which can be of heterogeneous structures and chemistry, either in purely QM calculations or in hybrid QM/molecular mechanics (MM) simulations. QM programs are also used to develop MM force field parameters for small molecules to be used along with established force fields for biomolecules in classical simulations. With this growing need in mind, here we report a set of software tools developed and closely integrated within the broadly used molecular visualization/analysis program, VMD, that allow the user to construct, modify, and parametrize small molecules and prepare them for QM, hybrid QM/MM, or classical simulations. The tools also provide interactive analysis and visualization capabilities in an easy-to-use and integrated environment. In this paper, we briefly report on these tools and their major features and capabilities, along with examples of how they can facilitate molecular research in computational biophysics that might be otherwise prohibitively complex.

Details

Language :
English
ISSN :
1549-960X
Volume :
63
Issue :
15
Database :
MEDLINE
Journal :
Journal of chemical information and modeling
Publication Type :
Academic Journal
Accession number :
37506321
Full Text :
https://doi.org/10.1021/acs.jcim.3c00658