Sequence co-evolution gives 3D contacts and structures of protein complexes Journal Article


Authors: Hopf, T. A.; Scharfe, C. P. I.; Rodrigues, J. P. G. L. M.; Green, A. G.; Kohlbacher, O.; Sander, C.; Bonvin, A. M. J. J.; Marks, D. S.
Article Title: Sequence co-evolution gives 3D contacts and structures of protein complexes
Abstract: Protein-protein interactions are fundamental to many biological processes. Experimental screens have identified tens of thousands of interactions and structural biology has provided detailed functional insight for select 3D protein complexes. An alternative rich source of information about protein interactions is the evolutionary sequence record. Building on earlier work, we show that analysis of correlated evolutionary sequence changes across proteins identifies residues that are close in space with sufficient accuracy to determine the three-dimensional structure of the protein complexes. We evaluate prediction performance in blinded tests on 76 complexes of known 3D structure, predict protein-protein contacts in 32 complexes of unknown structure, and demonstrate how evolutionary couplings can be used to distinguish between interacting and non-interacting protein pairs in a large complex. With the current growth of sequence databases, we expect that the method can be generalized to genome-wide elucidation of protein-protein interaction networks and used for interaction predictions at residue resolution.
Keywords: evolution; escherichia-coli; cross-linking; information; structure prediction; residue; contacts; correlated mutations; coli atp synthase; methionine abc transporter; epsilon-subunit
Journal Title: eLife
Volume: 3
ISSN: 2050-084X
Publisher: eLife Sciences Publications Ltd.  
Date Published: 2014-09-25
Start Page: e03430
Language: English
ACCESSION: WOS:000342126700002
DOI: 10.7554/eLife.03430
PROVIDER: wos
PUBMED: 25255213
PMCID: PMC4360534
Notes: Article -- Source: Wos
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  1. Chris Sander
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