Scinovex
article Open AccessTop 1% cited

How good is automated protein docking?

Proteins Structure Function and Bioinformatics · 2013 · Vol. 81(12) · pp. 2159–2166
Dima KozakovDmitri BeglovTanggis BohnuudScott E. MottarellaBing XiaDavid HallSándor Vajda

Abstract

The protein docking server ClusPro has been participating in critical assessment of prediction of interactions (CAPRI) since its introduction in 2004. This article evaluates the performance of ClusPro 2.0 for targets 46-58 in Rounds 22-27 of CAPRI. The analysis leads to a number of important observations. First, ClusPro reliably yields acceptable or medium accuracy models for targets of moderate difficulty that have also been successfully predicted by other groups, and fails only for targets that have few acceptable models submitted. Second, the quality of automated docking by ClusPro is very close to that of the best human predictor groups, including our own submissions. This is very important, because servers have to submit results within 48 h and the predictions should be reproducible, whereas human predictors have several weeks and can use any type of information. Third, while we refined the ClusPro results for manual submission by running computationally costly Monte Carlo minimization simulations, we observed significant improvement in accuracy only for two of the six complexes correctly predicted by ClusPro. Fourth, new developments, not seen in previous rounds of CAPRI, are that the top ranked model provided by ClusPro was acceptable or better quality for all these six targets, and that the top ranked model was also the highest quality for five of the six, confirming that ranking models based on cluster size can reliably identify the best near-native conformations.

Protein Structure and DynamicsComputational Drug Discovery MethodsBioinformatics and Genomic NetworksComputer scienceDocking (animal)Ranking (information retrieval)Monte Carlo methodData miningArtificial intelligenceMachine learningStatisticsMathematicsMedicine

MeSH terms

Computer SimulationHumansModels, MolecularMonte Carlo MethodProtein ConformationProteinsSoftwareComputational BiologyInternetProtein Interaction MappingDatabases, ProteinProteomicsMolecular Docking Simulation
Citations
786
FWCI
20.33
field-weighted impact
References
40
Percentile
100%
vs. same field & year
Citations per year
Cited by
New additions to the <scp>C</scp>lus<scp>P</scp>ro server motivated by <scp>CAPRI</scp>
Proteins Structure Function and Bioinformatics · 2016 · 616 citations
The ClusPro web server for protein–protein docking
Nature Protocols · 2017 · 3,230 citations
References
The HADDOCK web server for data-driven biomolecular docking
Nature Protocols · 2010 · 1,402 citations
ZDOCK: An initial‐stage protein‐docking algorithm
Proteins Structure Function and Bioinformatics · 2003 · 1,398 citations
CAPRI: A Critical Assessment of PRedicted Interactions
Proteins Structure Function and Bioinformatics · 2003 · 707 citations
HADDOCK:  A Protein−Protein Docking Approach Based on Biochemical or Biophysical Information
Journal of the American Chemical Society · 2003 · 3,186 citations
Protein docking using spherical polar Fourier correlations
Proteins Structure Function and Bioinformatics · 2000 · 551 citations
PIPER: An FFT‐based protein docking program with pairwise potentials
Proteins Structure Function and Bioinformatics · 2006 · 870 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.