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MolDock:  A New Technique for High-Accuracy Molecular Docking

Journal of Medicinal Chemistry · 2006 · Vol. 49(11) · pp. 3315–3321

Abstract

In this article we introduce a molecular docking algorithm called MolDock. MolDock is based on a new heuristic search algorithm that combines differential evolution with a cavity prediction algorithm. The docking scoring function of MolDock is an extension of the piecewise linear potential (PLP) including new hydrogen bonding and electrostatic terms. To further improve docking accuracy, a re-ranking scoring function is introduced, which identifies the most promising docking solution from the solutions obtained by the docking algorithm. The docking accuracy of MolDock has been evaluated by docking flexible ligands to 77 protein targets. MolDock was able to identify the correct binding mode of 87% of the complexes. In comparison, the accuracy of Glide and Surflex is 82% and 75%, respectively. FlexX obtained 58% and GOLD 78% on subsets containing 76 and 55 cases, respectively.

Computational Drug Discovery MethodsProtein Structure and DynamicsProtein Degradation and InhibitorsDocking (animal)Searching the conformational space for dockingChemistryMacromolecular dockingAlgorithmComputer scienceComputational chemistryMolecular dynamicsBinding siteBiochemistry

MeSH terms

AlgorithmsBinding SitesLigandsModels, MolecularProteinsThermodynamicsDrug Design
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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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