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From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors

Src Homology 3 domains are ubiquitous small interaction modules known to act as docking sites and regulatory elements in a wide range of proteins. Prior experimental NMR work on the SH3 domain of Src showed that ligand binding induces long-range dynamic changes consistent with an induced fit mechani...

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Autores principales: Zafra Ruano, Ana, Cilia, Elisa, Couceiro, José R., Ruiz Sanz, Javier, Schymkowitz, Joost, Rousseau, Frederic, Luque, Irene, Lenaerts, Tom
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4877006/
https://www.ncbi.nlm.nih.gov/pubmed/27213566
http://dx.doi.org/10.1371/journal.pcbi.1004938
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author Zafra Ruano, Ana
Cilia, Elisa
Couceiro, José R.
Ruiz Sanz, Javier
Schymkowitz, Joost
Rousseau, Frederic
Luque, Irene
Lenaerts, Tom
author_facet Zafra Ruano, Ana
Cilia, Elisa
Couceiro, José R.
Ruiz Sanz, Javier
Schymkowitz, Joost
Rousseau, Frederic
Luque, Irene
Lenaerts, Tom
author_sort Zafra Ruano, Ana
collection PubMed
description Src Homology 3 domains are ubiquitous small interaction modules known to act as docking sites and regulatory elements in a wide range of proteins. Prior experimental NMR work on the SH3 domain of Src showed that ligand binding induces long-range dynamic changes consistent with an induced fit mechanism. The identification of the residues that participate in this mechanism produces a chart that allows for the exploration of the regulatory role of such domains in the activity of the encompassing protein. Here we show that a computational approach focusing on the changes in side chain dynamics through ligand binding identifies equivalent long-range effects in the Src SH3 domain. Mutation of a subset of the predicted residues elicits long-range effects on the binding energetics, emphasizing the relevance of these positions in the definition of intramolecular cooperative networks of signal transduction in this domain. We find further support for this mechanism through the analysis of seven other publically available SH3 domain structures of which the sequences represent diverse SH3 classes. By comparing the eight predictions, we find that, in addition to a dynamic pathway that is relatively conserved throughout all SH3 domains, there are dynamic aspects specific to each domain and homologous subgroups. Our work shows for the first time from a structural perspective, which transduction mechanisms are common between a subset of closely related and distal SH3 domains, while at the same time highlighting the differences in signal transduction that make each family member unique. These results resolve the missing link between structural predictions of dynamic changes and the domain sectors recently identified for SH3 domains through sequence analysis.
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spelling pubmed-48770062016-06-09 From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors Zafra Ruano, Ana Cilia, Elisa Couceiro, José R. Ruiz Sanz, Javier Schymkowitz, Joost Rousseau, Frederic Luque, Irene Lenaerts, Tom PLoS Comput Biol Research Article Src Homology 3 domains are ubiquitous small interaction modules known to act as docking sites and regulatory elements in a wide range of proteins. Prior experimental NMR work on the SH3 domain of Src showed that ligand binding induces long-range dynamic changes consistent with an induced fit mechanism. The identification of the residues that participate in this mechanism produces a chart that allows for the exploration of the regulatory role of such domains in the activity of the encompassing protein. Here we show that a computational approach focusing on the changes in side chain dynamics through ligand binding identifies equivalent long-range effects in the Src SH3 domain. Mutation of a subset of the predicted residues elicits long-range effects on the binding energetics, emphasizing the relevance of these positions in the definition of intramolecular cooperative networks of signal transduction in this domain. We find further support for this mechanism through the analysis of seven other publically available SH3 domain structures of which the sequences represent diverse SH3 classes. By comparing the eight predictions, we find that, in addition to a dynamic pathway that is relatively conserved throughout all SH3 domains, there are dynamic aspects specific to each domain and homologous subgroups. Our work shows for the first time from a structural perspective, which transduction mechanisms are common between a subset of closely related and distal SH3 domains, while at the same time highlighting the differences in signal transduction that make each family member unique. These results resolve the missing link between structural predictions of dynamic changes and the domain sectors recently identified for SH3 domains through sequence analysis. Public Library of Science 2016-05-23 /pmc/articles/PMC4877006/ /pubmed/27213566 http://dx.doi.org/10.1371/journal.pcbi.1004938 Text en © 2016 Zafra Ruano et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Zafra Ruano, Ana
Cilia, Elisa
Couceiro, José R.
Ruiz Sanz, Javier
Schymkowitz, Joost
Rousseau, Frederic
Luque, Irene
Lenaerts, Tom
From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors
title From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors
title_full From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors
title_fullStr From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors
title_full_unstemmed From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors
title_short From Binding-Induced Dynamic Effects in SH3 Structures to Evolutionary Conserved Sectors
title_sort from binding-induced dynamic effects in sh3 structures to evolutionary conserved sectors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4877006/
https://www.ncbi.nlm.nih.gov/pubmed/27213566
http://dx.doi.org/10.1371/journal.pcbi.1004938
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