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Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins

SH3 domains are peptide recognition modules that mediate the assembly of diverse biological complexes. We scanned billions of phage-displayed peptides to map the binding specificities of the SH3 domain family in the budding yeast, Saccharomyces cerevisiae. Although most of the SH3 domains fall into...

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Detalles Bibliográficos
Autores principales: Tonikian, Raffi, Xin, Xiaofeng, Toret, Christopher P., Gfeller, David, Landgraf, Christiane, Panni, Simona, Paoluzi, Serena, Castagnoli, Luisa, Currell, Bridget, Seshagiri, Somasekar, Yu, Haiyuan, Winsor, Barbara, Vidal, Marc, Gerstein, Mark B., Bader, Gary D., Volkmer, Rudolf, Cesareni, Gianni, Drubin, David G., Kim, Philip M., Sidhu, Sachdev S., Boone, Charles
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2756588/
https://www.ncbi.nlm.nih.gov/pubmed/19841731
http://dx.doi.org/10.1371/journal.pbio.1000218
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author Tonikian, Raffi
Xin, Xiaofeng
Toret, Christopher P.
Gfeller, David
Landgraf, Christiane
Panni, Simona
Paoluzi, Serena
Castagnoli, Luisa
Currell, Bridget
Seshagiri, Somasekar
Yu, Haiyuan
Winsor, Barbara
Vidal, Marc
Gerstein, Mark B.
Bader, Gary D.
Volkmer, Rudolf
Cesareni, Gianni
Drubin, David G.
Kim, Philip M.
Sidhu, Sachdev S.
Boone, Charles
author_facet Tonikian, Raffi
Xin, Xiaofeng
Toret, Christopher P.
Gfeller, David
Landgraf, Christiane
Panni, Simona
Paoluzi, Serena
Castagnoli, Luisa
Currell, Bridget
Seshagiri, Somasekar
Yu, Haiyuan
Winsor, Barbara
Vidal, Marc
Gerstein, Mark B.
Bader, Gary D.
Volkmer, Rudolf
Cesareni, Gianni
Drubin, David G.
Kim, Philip M.
Sidhu, Sachdev S.
Boone, Charles
author_sort Tonikian, Raffi
collection PubMed
description SH3 domains are peptide recognition modules that mediate the assembly of diverse biological complexes. We scanned billions of phage-displayed peptides to map the binding specificities of the SH3 domain family in the budding yeast, Saccharomyces cerevisiae. Although most of the SH3 domains fall into the canonical classes I and II, each domain utilizes distinct features of its cognate ligands to achieve binding selectivity. Furthermore, we uncovered several SH3 domains with specificity profiles that clearly deviate from the two canonical classes. In conjunction with phage display, we used yeast two-hybrid and peptide array screening to independently identify SH3 domain binding partners. The results from the three complementary techniques were integrated using a Bayesian algorithm to generate a high-confidence yeast SH3 domain interaction map. The interaction map was enriched for proteins involved in endocytosis, revealing a set of SH3-mediated interactions that underlie formation of protein complexes essential to this biological pathway. We used the SH3 domain interaction network to predict the dynamic localization of several previously uncharacterized endocytic proteins, and our analysis suggests a novel role for the SH3 domains of Lsb3p and Lsb4p as hubs that recruit and assemble several endocytic complexes.
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spelling pubmed-27565882009-10-20 Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins Tonikian, Raffi Xin, Xiaofeng Toret, Christopher P. Gfeller, David Landgraf, Christiane Panni, Simona Paoluzi, Serena Castagnoli, Luisa Currell, Bridget Seshagiri, Somasekar Yu, Haiyuan Winsor, Barbara Vidal, Marc Gerstein, Mark B. Bader, Gary D. Volkmer, Rudolf Cesareni, Gianni Drubin, David G. Kim, Philip M. Sidhu, Sachdev S. Boone, Charles PLoS Biol Research Article SH3 domains are peptide recognition modules that mediate the assembly of diverse biological complexes. We scanned billions of phage-displayed peptides to map the binding specificities of the SH3 domain family in the budding yeast, Saccharomyces cerevisiae. Although most of the SH3 domains fall into the canonical classes I and II, each domain utilizes distinct features of its cognate ligands to achieve binding selectivity. Furthermore, we uncovered several SH3 domains with specificity profiles that clearly deviate from the two canonical classes. In conjunction with phage display, we used yeast two-hybrid and peptide array screening to independently identify SH3 domain binding partners. The results from the three complementary techniques were integrated using a Bayesian algorithm to generate a high-confidence yeast SH3 domain interaction map. The interaction map was enriched for proteins involved in endocytosis, revealing a set of SH3-mediated interactions that underlie formation of protein complexes essential to this biological pathway. We used the SH3 domain interaction network to predict the dynamic localization of several previously uncharacterized endocytic proteins, and our analysis suggests a novel role for the SH3 domains of Lsb3p and Lsb4p as hubs that recruit and assemble several endocytic complexes. Public Library of Science 2009-10-20 /pmc/articles/PMC2756588/ /pubmed/19841731 http://dx.doi.org/10.1371/journal.pbio.1000218 Text en Tonikian 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tonikian, Raffi
Xin, Xiaofeng
Toret, Christopher P.
Gfeller, David
Landgraf, Christiane
Panni, Simona
Paoluzi, Serena
Castagnoli, Luisa
Currell, Bridget
Seshagiri, Somasekar
Yu, Haiyuan
Winsor, Barbara
Vidal, Marc
Gerstein, Mark B.
Bader, Gary D.
Volkmer, Rudolf
Cesareni, Gianni
Drubin, David G.
Kim, Philip M.
Sidhu, Sachdev S.
Boone, Charles
Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins
title Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins
title_full Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins
title_fullStr Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins
title_full_unstemmed Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins
title_short Bayesian Modeling of the Yeast SH3 Domain Interactome Predicts Spatiotemporal Dynamics of Endocytosis Proteins
title_sort bayesian modeling of the yeast sh3 domain interactome predicts spatiotemporal dynamics of endocytosis proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2756588/
https://www.ncbi.nlm.nih.gov/pubmed/19841731
http://dx.doi.org/10.1371/journal.pbio.1000218
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