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PMID: 17274016 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

A semiempirical free energy force field with charge-based desolvation.

Journal of computational chemistry ·Vol. 28 ·No. 6 ·2007-04-30 ·Pages 1145-52

Huey R, Morris GM, Olson AJ, Goodsell DS

Abstract

The authors describe the development and testing of a semiempirical free energy force field for use in AutoDock4 and similar grid-based docking methods. The force field is based on a comprehensive thermodynamic model that allows incorporation of intramolecular energies into the predicted free energy of binding. It also incorporates a charge-based method for evaluation of desolvation designed to use a typical set of atom types. The method has been calibrated on a set of 188 diverse protein-ligand complexes of known structure and binding energy, and tested on a set of 100 complexes of ligands with retroviral proteases. The force field shows improvement in redocking simulations over the previous AutoDock3 force field.

MeSH Terms
Algorithms Databases, Protein Drug Design HIV Protease/chemistry,metabolism HIV Protease Inhibitors/chemistry Hydrogen Bonding Ligands Mathematical Computing Models, Chemical Models, Molecular Molecular Conformation Protein Binding Proteins/chemistry,metabolism Software Static Electricity Thermodynamics Water/chemistry
Chemicals
HIV Protease Inhibitors Ligands Proteins Water HIV Protease
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Huey Ruth
Department of Molecular Biology, Scripps Research Institute, La Jolla, California 92102, USA.
Morris Garrett M
Olson Arthur J
Goodsell David S
Article Info
Journal
Journal of computational chemistry
Abbr.
J Comput Chem
ISSN
0192-8651
Published
2007-04-30
Pages
1145-52
Language
English
Region
United States
NLM ID
9878362
Subset
IM
Grants
NIGMS NIH HHS · P01 GM48870 · United States
NIGMS NIH HHS · R01 GM069832 · United States
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