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Structure prediction for CASP8 with all‐atom refinement using Rosetta

Proteins Structure Function and Bioinformatics · 2009 · Vol. 77(S9) · pp. 89–99
Srivatsan RamanRobert M. VernonJames ThompsonMichael D. TykaRuslan I. SadreyevJimin PeiDavid E. KimElizabeth H. KelloggFrank DiMaioOliver F. LangeLisa N. KinchWilliam ShefflerBong‐Hyun KimRhiju DasNick V. GrishinDavid Baker

Abstract

We describe predictions made using the Rosetta structure prediction methodology for the Eighth Critical Assessment of Techniques for Protein Structure Prediction. Aggressive sampling and all-atom refinement were carried out for nearly all targets. A combination of alignment methodologies was used to generate starting models from a range of templates, and the models were then subjected to Rosetta all atom refinement. For the 64 domains with readily identified templates, the best submitted model was better than the best alignment to the best template in the Protein Data Bank for 24 cases, and improved over the best starting model for 43 cases. For 13 targets where only very distant sequence relationships to proteins of known structure were detected, models were generated using the Rosetta de novo structure prediction methodology followed by all-atom refinement; in several cases the submitted models were better than those based on the available templates. Of the 12 refinement challenges, the best submitted model improved on the starting model in seven cases. These improvements over the starting template-based models and refinement tests demonstrate the power of Rosetta structure refinement in improving model accuracy.

Protein Structure and DynamicsEnzyme Structure and FunctionMachine Learning in BioinformaticsTemplateProtein structure predictionComputer scienceCASPFragment (logic)AlgorithmData miningProtein structureChemistryProgramming language

MeSH terms

Models, MolecularProtein ConformationProteinsSoftwareSequence AlignmentProtein FoldingComputational BiologySequence Analysis, Protein

Funding

  • National Institutes of Health
  • Argonne National Laboratory
Citations
524
FWCI
10.62
field-weighted impact
References
34
Percentile
99%
vs. same field & year
Citations per year
References
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Nature Protocols · 2008 · 1,246 citations
Basic local alignment search tool
Journal of Molecular Biology · 1990 · 93,570 citations
Effective energy function for proteins in solution
Proteins Structure Function and Bioinformatics · 1999 · 1,283 citations
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