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Evaluation of model refinement in CASP13.

Published version
Peer-reviewed

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Abstract

Performance in the model refinement category of the 13th round of Critical Assessment of Structure Prediction (CASP13) is assessed, showing that some groups consistently improve most starting models whereas the majority of participants continue to degrade the starting model on average. Using the ranking formula developed for CASP12, it is shown that only 7 of 32 groups perform better than a "naïve predictor" who just submits the starting model. Common features in their approaches include a dependence on physics-based force fields to judge alternative conformations and the use of molecular dynamics to relax models to local minima, usually with some restraints to prevent excessively large movements. In addition to the traditional CASP metrics that focus largely on the quality of the overall fold, alternative metrics are evaluated, including comparisons of the main-chain and side-chain torsion angles, and the utility of the models for solving crystal structures by the molecular replacement method. It is proposed that the introduction of these metrics, as well as consideration of the accuracy of coordinate error estimates, would improve the discrimination between good and very good models.

Description

Journal Title

Proteins

Conference Name

Journal ISSN

0887-3585
1097-0134

Volume Title

87

Publisher

Wiley

Rights and licensing

Except where otherwised noted, this item's license is described as Attribution 4.0 International (CC BY)
Sponsorship
European Commission Horizon 2020 (H2020) Marie Sklodowska-Curie actions (790122)
Wellcome Trust (209407/Z/17/Z)
Wellcome Trust Marie Sklowdowska-Curie grain for EU Horizon 2020