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January 19, 2007Journal of Medicinal Chemistry637 citations

Diverse, High-Quality Test Set for the Validation of Protein−Ligand Docking Performance

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MHMichael J. HartshornMVMarcel L. VerdonkGCGianni Chessari

Key Points

  • The aim is to create a reliable test set of protein-ligand complexes for evaluating docking performance.
  • Developed a procedure for analyzing and classifying crystal structures.
  • Selected high-resolution protein-ligand complexes based on electron density reconstruction.
  • Prepared a diverse set of 85 relevant complexes for docking evaluation.
  • Approximately 80% success rate for redocking into native structures with unbiased protocols.
  • Success rates exceed 90% with optimized protocols.

Abstract

A procedure for analyzing and classifying publicly available crystal structures has been developed. It has been used to identify high-resolution protein-ligand complexes that can be assessed by reconstructing the electron density for the ligand using the deposited structure factors. The complexes have been clustered according to the protein sequences, and clusters have been discarded if they do not represent proteins thought to be of direct interest to the pharmaceutical or agrochemical industry. Rules have been used to exclude complexes containing non-drug-like ligands. One complex from each cluster has been selected where a structure of sufficient quality was available. The final Astex diverse set contains 85 diverse, relevant protein-ligand complexes, which have been prepared in a format suitable for docking and are to be made freely available to the entire research community (http://www.ccdc.cam.ac.uk). The performance of the docking program GOLD against the new set is assessed using a variety of protocols. Relatively unbiased protocols give success rates of approximately 80% for redocking into native structures, but it is possible to get success rates of over 90% with some protocols.

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Cite This Study

Hartshorn et al. (2007) studied this question.

synapsesocial.com/papers/69d5716c75589c71d767e1b8https://doi.org/10.1021/jm061277y
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