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Critical assessment of methods of protein structure prediction (CASP) — round x

Proteins Structure Function and Bioinformatics · 2013 · Vol. 82(S2) · pp. 1–6
John MoultKrzysztof FidelisAndriy KryshtafovychTorsten SchwedeAnna Tramontano

Abstract

This article is an introduction to the special issue of the journal PROTEINS, dedicated to the tenth Critical Assessment of Structure Prediction (CASP) experiment to assess the state of the art in protein structure modeling. The article describes the conduct of the experiment, the categories of prediction included, and outlines the evaluation and assessment procedures. The 10 CASP experiments span almost 20 years of progress in the field of protein structure modeling, and there have been enormous advances in methods and model accuracy in that period. Notable in this round is the first sustained improvement of models with refinement methods, using molecular dynamics. For the first time, we tested the ability of modeling methods to make use of sparse experimental three-dimensional contact information, such as may be obtained from new experimental techniques, with encouraging results. On the other hand, new contact prediction methods, though holding considerable promise, have yet to make an impact in CASP testing. The nature of CASP targets has been changing in recent CASPs, reflecting shifts in experimental structural biology, with more irregular structures, more multi-domain and multi-subunit structures, and less standard versions of known folds. When allowance is made for these factors, we continue to see steady progress in the overall accuracy of models, particularly resulting from improvement of non-template regions.

Protein Structure and DynamicsEnzyme Structure and FunctionRNA and protein synthesis mechanismsCASPProtein structure predictionComputer scienceProtein structureComputational biologyBiology

MeSH terms

Models, MolecularProtein ConformationProteinsComputational BiologySequence Analysis, ProteinMolecular Dynamics Simulation

Funding

  • King Abdullah University of Science and Technology
  • National Institutes of Health
  • National Institute of General Medical Sciences
Citations
689
FWCI
38.12
field-weighted impact
References
56
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100%
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References
A large‐scale experiment to assess protein structure prediction methods
Proteins Structure Function and Bioinformatics · 1995 · 548 citations
UCSF Chimera—A visualization system for exploratory research and analysis
Journal of Computational Chemistry · 2004 · 47,120 citations
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