Literature DB >> 9126849

Development and validation of a genetic algorithm for flexible docking.

G Jones1, P Willett, R C Glen, A R Leach, R Taylor.   

Abstract

Prediction of small molecule binding modes to macromolecules of known three-dimensional structure is a problem of paramount importance in rational drug design (the "docking" problem). We report the development and validation of the program GOLD (Genetic Optimisation for Ligand Docking). GOLD is an automated ligand docking program that uses a genetic algorithm to explore the full range of ligand conformational flexibility with partial flexibility of the protein, and satisfies the fundamental requirement that the ligand must displace loosely bound water on binding. Numerous enhancements and modifications have been applied to the original technique resulting in a substantial increase in the reliability and the applicability of the algorithm. The advanced algorithm has been tested on a dataset of 100 complexes extracted from the Brookhaven Protein DataBank. When used to dock the ligand back into the binding site, GOLD achieved a 71% success rate in identifying the experimental binding mode.

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Year:  1997        PMID: 9126849     DOI: 10.1006/jmbi.1996.0897

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  1350 in total

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2.  Deciphering common failures in molecular docking of ligand-protein complexes.

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4.  MCDOCK: a Monte Carlo simulation approach to the molecular docking problem.

Authors:  M Liu; S Wang
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5.  Morphological similarity: a 3D molecular similarity method correlated with protein-ligand recognition.

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6.  Comparison of two implementations of the incremental construction algorithm in flexible docking of thrombin inhibitors.

Authors:  R M Knegtel; D M Bayada; R A Engh; W von der Saal; V J van Geerestein; P D Grootenhuis
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7.  Computer based screening of compound databases: 1. Preselection of benzamidine-based thrombin inhibitors.

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8.  A comparative docking study and the design of potentially selective MMP inhibitors.

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9.  DOCK 4.0: search strategies for automated molecular docking of flexible molecule databases.

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10.  Protein ligand docking based on empirical method for binding affinity estimation.

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