Literature DB >> 17934447

High-resolution structure prediction and the crystallographic phase problem.

Bin Qian1, Srivatsan Raman, Rhiju Das, Philip Bradley, Airlie J McCoy, Randy J Read, David Baker.   

Abstract

The energy-based refinement of low-resolution protein structure models to atomic-level accuracy is a major challenge for computational structural biology. Here we describe a new approach to refining protein structure models that focuses sampling in regions most likely to contain errors while allowing the whole structure to relax in a physically realistic all-atom force field. In applications to models produced using nuclear magnetic resonance data and to comparative models based on distant structural homologues, the method can significantly improve the accuracy of the structures in terms of both the backbone conformations and the placement of core side chains. Furthermore, the resulting models satisfy a particularly stringent test: they provide significantly better solutions to the X-ray crystallographic phase problem in molecular replacement trials. Finally, we show that all-atom refinement can produce de novo protein structure predictions that reach the high accuracy required for molecular replacement without any experimental phase information and in the absence of templates suitable for molecular replacement from the Protein Data Bank. These results suggest that the combination of high-resolution structure prediction with state-of-the-art phasing tools may be unexpectedly powerful in phasing crystallographic data for which molecular replacement is hindered by the absence of sufficiently accurate previous models.

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Year:  2007        PMID: 17934447      PMCID: PMC2504711          DOI: 10.1038/nature06249

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  48 in total

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3.  Critical assessment of methods of protein structure prediction (CASP)--round 6.

Authors:  John Moult; Krzysztof Fidelis; Burkhard Rost; Tim Hubbard; Anna Tramontano
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4.  Toward high-resolution de novo structure prediction for small proteins.

Authors:  Philip Bradley; Kira M S Misura; David Baker
Journal:  Science       Date:  2005-09-16       Impact factor: 47.728

5.  Inferential structure determination.

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6.  Protein structure change studied by hydrogen-deuterium exchange, functional labeling, and mass spectrometry.

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Journal:  Proc Natl Acad Sci U S A       Date:  2003-05-28       Impact factor: 11.205

7.  The grail problem.

Authors:  G A Petsko
Journal:  Genome Biol       Date:  2000-06-09       Impact factor: 13.583

8.  TM-align: a protein structure alignment algorithm based on the TM-score.

Authors:  Yang Zhang; Jeffrey Skolnick
Journal:  Nucleic Acids Res       Date:  2005-04-22       Impact factor: 16.971

9.  Ab initio molecular-replacement phasing for symmetric helical membrane proteins.

Authors:  Pavel Strop; Michael R Brzustowicz; Axel T Brunger
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2007-01-16

10.  Phaser crystallographic software.

Authors:  Airlie J McCoy; Ralf W Grosse-Kunstleve; Paul D Adams; Martyn D Winn; Laurent C Storoni; Randy J Read
Journal:  J Appl Crystallogr       Date:  2007-07-13       Impact factor: 3.304

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  158 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2011-12-05       Impact factor: 11.205

2.  RNA-Puzzles: a CASP-like evaluation of RNA three-dimensional structure prediction.

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Journal:  RNA       Date:  2012-02-23       Impact factor: 4.942

3.  Determination of solution structures of proteins up to 40 kDa using CS-Rosetta with sparse NMR data from deuterated samples.

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Review 4.  Structures of membrane proteins.

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Review 5.  Solving novel RNA structures using only secondary structural fragments.

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6.  Integrative structure modeling of macromolecular assemblies from proteomics data.

Authors:  Keren Lasker; Jeremy L Phillips; Daniel Russel; Javier Velázquez-Muriel; Dina Schneidman-Duhovny; Elina Tjioe; Ben Webb; Avner Schlessinger; Andrej Sali
Journal:  Mol Cell Proteomics       Date:  2010-05-27       Impact factor: 5.911

7.  Alternate states of proteins revealed by detailed energy landscape mapping.

Authors:  Michael D Tyka; Daniel A Keedy; Ingemar André; Frank Dimaio; Yifan Song; David C Richardson; Jane S Richardson; David Baker
Journal:  J Mol Biol       Date:  2010-11-10       Impact factor: 5.469

8.  Progress in protein crystallography.

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9.  Assessment of protein structure refinement in CASP9.

Authors:  Justin L MacCallum; Alberto Pérez; Michael J Schnieders; Lan Hua; Matthew P Jacobson; Ken A Dill
Journal:  Proteins       Date:  2011-08-30

10.  Assessment of template-based protein structure predictions in CASP10.

Authors:  Yuanpeng J Huang; Binchen Mao; James M Aramini; Gaetano T Montelione
Journal:  Proteins       Date:  2014-02
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