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GEMDOCK: A generic evolutionary method for molecular docking

Proteins Structure Function and Bioinformatics · 2004 · Vol. 55(2) · pp. 288–304
Jinn‐Moon YangChun‐Chen Chen

Abstract

We have developed an evolutionary approach for flexible ligand docking. This approval, GEMDOCK, uses a Generic Evolutionary Method for molecular DOCKing and an empirical scoring function. The former combines both discrete and continuous global search strategies with local search strategies to speed up convergence, whereas the latter results in rapid recognition of potential ligands. GEMDOCK was tested on a diverse data set of 100 protein-ligand complexes from the Protein Data Bank. In 79% of these complexes, the docked lowest energy ligand structures had root-mean-square derivations (RMSDs) below 2.0 A with respect to the corresponding crystal structures. The success rate increased to 85% if the structure water molecules were retained. We evaluated GEMDOCK on two cross-docking experiments in which each ligand of a protein ensemble was docked into each protein of the ensemble. Seventy-six percent of the docked structures had RMSDs below 2.0 A when the ligands were docked into foreign structures. We analyzed and validated GEMDOCK with respect to various search spaces and scoring functions, and found that if the scoring function was perfect, then the predicted accuracy was also essentially perfect. This study suggests that GEMDOCK is a useful tool for molecular recognition and may be used to systematically evaluate and thus improve scoring functions.

Computational Drug Discovery MethodsProtein Structure and DynamicsRNA and protein synthesis mechanismsDocking (animal)Protein–ligand dockingProtein Data BankComputer scienceMolecular dynamicsEvolutionary algorithmComputational biologyProtein structureArtificial intelligenceMachine learning

MeSH terms

AlgorithmsBinding SitesHydrogen BondingImmunoglobulin Fab FragmentsLigandsModels, MolecularMutationProbabilityProtein BindingProteinsRecombination, GeneticSensitivity and SpecificitySoftwareThermodynamicsReproducibility of Results
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Proteins Structure Function and Bioinformatics · 2002 · 1,239 citations
Evaluation of the FLEXX incremental construction algorithm for protein-ligand docking
Proteins Structure Function and Bioinformatics · 1999 · 894 citations
A Fast Flexible Docking Method using an Incremental Construction Algorithm
Journal of Molecular Biology · 1996 · 2,797 citations
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