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Comparative evaluation of eight docking tools for docking and virtual screening accuracy

Proteins Structure Function and Bioinformatics · 2004 · Vol. 57(2) · pp. 225–242
Esther KellenbergerJordi RodrigoPascal MüllerDidier Rognan

Abstract

Eight docking programs (DOCK, FLEXX, FRED, GLIDE, GOLD, SLIDE, SURFLEX, and QXP) that can be used for either single-ligand docking or database screening have been compared for their propensity to recover the X-ray pose of 100 small-molecular-weight ligands, and for their capacity to discriminate known inhibitors of an enzyme (thymidine kinase) from randomly chosen "drug-like" molecules. Interestingly, both properties are found to be correlated, since the tools showing the best docking accuracy (GLIDE, GOLD, and SURFLEX) are also the most successful in ranking known inhibitors in a virtual screening experiment. Moreover, the current study pinpoints some physicochemical descriptors of either the ligand or its cognate protein-binding site that generally lead to docking/scoring inaccuracies.

Computational Drug Discovery MethodsEnzyme Structure and FunctionProtein Structure and DynamicsDocking (animal)Virtual screeningDOCKProtein–ligand dockingChemistrySearching the conformational space for dockingComputational biologyDrug discoveryComputer scienceBinding site

MeSH terms

Computer GraphicsLigandsSoftwareThymidine KinaseUser-Computer InterfaceViral ProteinsDrug DesignHerpesvirus 1, HumanCrystallography, X-RayProtein Structure, QuaternaryDatabases, ProteinLibraries, Digital
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References
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