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From residue coevolution to protein conformational ensembles and functional dynamics

Sutto, L; Marsili, S; Valencia, A; Gervasio, FL; (2015) From residue coevolution to protein conformational ensembles and functional dynamics. Proceedings of the National Academy of Sciences , 112 (44) pp. 13567-13572. 10.1073/pnas.1508584112. Green open access

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Abstract

The analysis of evolutionary amino acid correlations has recently attracted a surge of renewed interest, also due to their successful use in de novo protein native structure prediction. However, many aspects of protein function, such as substrate binding and product release in enzymatic activity, can be fully understood only in terms of an equilibrium ensemble of alternative structures, rather than a single static structure. In this paper we combine coevolutionary data and molecular dynamics simulations to study protein conformational heterogeneity. To that end, we adapt the Boltzmann-learning algorithm to the analysis of homologous protein sequences and develop a coarse-grained protein model specifically tailored to convert the resulting contact predictions to a protein structural ensemble. By means of exhaustive sampling simulations, we analyze the set of conformations that are consistent with the observed residue correlations for a set of representative protein domains, showing that (i) the most representative structure is consistent with the experimental fold and (ii) the various regions of the sequence display different stability, related to multiple biologically relevant conformations and to the cooperativity of the coevolving pairs. Moreover, we show that the proposed protocol is able to reproduce the essential features of a protein folding mechanism as well as to account for regions involved in conformational transitions through the correct sampling of the involved conformers.

Type: Article
Title: From residue coevolution to protein conformational ensembles and functional dynamics
Open access status: An open access version is available from UCL Discovery
DOI: 10.1073/pnas.1508584112
Publisher version: http://dx.doi.org/10.1073/pnas.1508584112
Language: English
Additional information: Copyright © 2015 National Academy of Sciences.
Keywords: coevolution, network inference, coarse-grained protein folding, protein dynamics
UCL classification: UCL
UCL > Provost and Vice Provost Offices > UCL BEAMS
UCL > Provost and Vice Provost Offices > UCL BEAMS > Faculty of Maths and Physical Sciences
UCL > Provost and Vice Provost Offices > UCL BEAMS > Faculty of Maths and Physical Sciences > Dept of Chemistry
URI: https://discovery.ucl.ac.uk/id/eprint/1473616
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