Literature DB >> 24174311

Princeton_TIGRESS: protein geometry refinement using simulations and support vector machines.

George A Khoury1, Phanourios Tamamis, Neesha Pinnaduwage, James Smadbeck, Chris A Kieslich, Christodoulos A Floudas.   

Abstract

Protein structure refinement aims to perform a set of operations given a predicted structure to improve model quality and accuracy with respect to the native in a blind fashion. Despite the numerous computational approaches to the protein refinement problem reported in the previous three CASPs, an overwhelming majority of methods degrade models rather than improve them. We initially developed a method tested using blind predictions during CASP10 which was officially ranked in 5th place among all methods in the refinement category. Here, we present Princeton_TIGRESS, which when benchmarked on all CASP 7,8,9, and 10 refinement targets, simultaneously increased GDT_TS 76% of the time with an average improvement of 0.83 GDT_TS points per structure. The method was additionally benchmarked on models produced by top performing three-dimensional structure prediction servers during CASP10. The robustness of the Princeton_TIGRESS protocol was also tested for different random seeds. We make the Princeton_TIGRESS refinement protocol freely available as a web server at http://atlas.princeton.edu/refinement. Using this protocol, one can consistently refine a prediction to help bridge the gap between a predicted structure and the actual native structure.
Copyright © 2013 Wiley Periodicals, Inc.

Entities:  

Keywords:  CASP; model refinement; molecular dynamics; protein folding; protein structure prediction; structure selection

Mesh:

Substances:

Year:  2013        PMID: 24174311     DOI: 10.1002/prot.24459

Source DB:  PubMed          Journal:  Proteins        ISSN: 0887-3585


  7 in total

1.  Partial unfolding and refolding for structure refinement: A unified approach of geometric simulations and molecular dynamics.

Authors:  Avishek Kumar; Paul Campitelli; M F Thorpe; S Banu Ozkan
Journal:  Proteins       Date:  2015-11-17

2.  PREFMD: a web server for protein structure refinement via molecular dynamics simulations.

Authors:  Lim Heo; Michael Feig
Journal:  Bioinformatics       Date:  2018-03-15       Impact factor: 6.937

3.  Assessment of the model refinement category in CASP12.

Authors:  Ladislav Hovan; Vladimiras Oleinikovas; Havva Yalinca; Andriy Kryshtafovych; Giorgio Saladino; Francesco Luigi Gervasio
Journal:  Proteins       Date:  2017-11-29

4.  CASP11 refinement experiments with ROSETTA.

Authors:  Hahnbeom Park; Frank DiMaio; David Baker
Journal:  Proteins       Date:  2015-08-14

Review 5.  Methods for the Refinement of Protein Structure 3D Models.

Authors:  Recep Adiyaman; Liam James McGuffin
Journal:  Int J Mol Sci       Date:  2019-05-09       Impact factor: 5.923

6.  An analysis and evaluation of the WeFold collaborative for protein structure prediction and its pipelines in CASP11 and CASP12.

Authors:  Chen Keasar; Liam J McGuffin; Björn Wallner; Gaurav Chopra; Badri Adhikari; Debswapna Bhattacharya; Lauren Blake; Leandro Oliveira Bortot; Renzhi Cao; B K Dhanasekaran; Itzhel Dimas; Rodrigo Antonio Faccioli; Eshel Faraggi; Robert Ganzynkowicz; Sambit Ghosh; Soma Ghosh; Artur Giełdoń; Lukasz Golon; Yi He; Lim Heo; Jie Hou; Main Khan; Firas Khatib; George A Khoury; Chris Kieslich; David E Kim; Pawel Krupa; Gyu Rie Lee; Hongbo Li; Jilong Li; Agnieszka Lipska; Adam Liwo; Ali Hassan A Maghrabi; Milot Mirdita; Shokoufeh Mirzaei; Magdalena A Mozolewska; Melis Onel; Sergey Ovchinnikov; Anand Shah; Utkarsh Shah; Tomer Sidi; Adam K Sieradzan; Magdalena Ślusarz; Rafal Ślusarz; James Smadbeck; Phanourios Tamamis; Nicholas Trieber; Tomasz Wirecki; Yanping Yin; Yang Zhang; Jaume Bacardit; Maciej Baranowski; Nicholas Chapman; Seth Cooper; Alexandre Defelicibus; Jeff Flatten; Brian Koepnick; Zoran Popović; Bartlomiej Zaborowski; David Baker; Jianlin Cheng; Cezary Czaplewski; Alexandre Cláudio Botazzo Delbem; Christodoulos Floudas; Andrzej Kloczkowski; Stanislaw Ołdziej; Michael Levitt; Harold Scheraga; Chaok Seok; Johannes Söding; Saraswathi Vishveshwara; Dong Xu; Silvia N Crivelli
Journal:  Sci Rep       Date:  2018-07-02       Impact factor: 4.379

7.  ResiRole: residue-level functional site predictions to gauge the accuracies of protein structure prediction techniques.

Authors:  Joshua M Toth; Paul J DePietro; Juergen Haas; William A McLaughlin
Journal:  Bioinformatics       Date:  2021-04-20       Impact factor: 6.937

  7 in total

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