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An inter‐species protein–protein interaction network across vast evolutionary distance

In cellular systems, biophysical interactions between macromolecules underlie a complex web of functional interactions. How biophysical and functional networks are coordinated, whether all biophysical interactions correspond to functional interactions, and how such biophysical‐versus‐functional netw...

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Autores principales: Zhong, Quan, Pevzner, Samuel J, Hao, Tong, Wang, Yang, Mosca, Roberto, Menche, Jörg, Taipale, Mikko, Taşan, Murat, Fan, Changyu, Yang, Xinping, Haley, Patrick, Murray, Ryan R, Mer, Flora, Gebreab, Fana, Tam, Stanley, MacWilliams, Andrew, Dricot, Amélie, Reichert, Patrick, Santhanam, Balaji, Ghamsari, Lila, Calderwood, Michael A, Rolland, Thomas, Charloteaux, Benoit, Lindquist, Susan, Barabási, Albert‐László, Hill, David E, Aloy, Patrick, Cusick, Michael E, Xia, Yu, Roth, Frederick P, Vidal, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848758/
https://www.ncbi.nlm.nih.gov/pubmed/27107014
http://dx.doi.org/10.15252/msb.20156484
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author Zhong, Quan
Pevzner, Samuel J
Hao, Tong
Wang, Yang
Mosca, Roberto
Menche, Jörg
Taipale, Mikko
Taşan, Murat
Fan, Changyu
Yang, Xinping
Haley, Patrick
Murray, Ryan R
Mer, Flora
Gebreab, Fana
Tam, Stanley
MacWilliams, Andrew
Dricot, Amélie
Reichert, Patrick
Santhanam, Balaji
Ghamsari, Lila
Calderwood, Michael A
Rolland, Thomas
Charloteaux, Benoit
Lindquist, Susan
Barabási, Albert‐László
Hill, David E
Aloy, Patrick
Cusick, Michael E
Xia, Yu
Roth, Frederick P
Vidal, Marc
author_facet Zhong, Quan
Pevzner, Samuel J
Hao, Tong
Wang, Yang
Mosca, Roberto
Menche, Jörg
Taipale, Mikko
Taşan, Murat
Fan, Changyu
Yang, Xinping
Haley, Patrick
Murray, Ryan R
Mer, Flora
Gebreab, Fana
Tam, Stanley
MacWilliams, Andrew
Dricot, Amélie
Reichert, Patrick
Santhanam, Balaji
Ghamsari, Lila
Calderwood, Michael A
Rolland, Thomas
Charloteaux, Benoit
Lindquist, Susan
Barabási, Albert‐László
Hill, David E
Aloy, Patrick
Cusick, Michael E
Xia, Yu
Roth, Frederick P
Vidal, Marc
author_sort Zhong, Quan
collection PubMed
description In cellular systems, biophysical interactions between macromolecules underlie a complex web of functional interactions. How biophysical and functional networks are coordinated, whether all biophysical interactions correspond to functional interactions, and how such biophysical‐versus‐functional network coordination is shaped by evolutionary forces are all largely unanswered questions. Here, we investigate these questions using an “inter‐interactome” approach. We systematically probed the yeast and human proteomes for interactions between proteins from these two species and functionally characterized the resulting inter‐interactome network. After a billion years of evolutionary divergence, the yeast and human proteomes are still capable of forming a biophysical network with properties that resemble those of intra‐species networks. Although substantially reduced relative to intra‐species networks, the levels of functional overlap in the yeast–human inter‐interactome network uncover significant remnants of co‐functionality widely preserved in the two proteomes beyond human–yeast homologs. Our data support evolutionary selection against biophysical interactions between proteins with little or no co‐functionality. Such non‐functional interactions, however, represent a reservoir from which nascent functional interactions may arise.
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spelling pubmed-48487582016-05-04 An inter‐species protein–protein interaction network across vast evolutionary distance Zhong, Quan Pevzner, Samuel J Hao, Tong Wang, Yang Mosca, Roberto Menche, Jörg Taipale, Mikko Taşan, Murat Fan, Changyu Yang, Xinping Haley, Patrick Murray, Ryan R Mer, Flora Gebreab, Fana Tam, Stanley MacWilliams, Andrew Dricot, Amélie Reichert, Patrick Santhanam, Balaji Ghamsari, Lila Calderwood, Michael A Rolland, Thomas Charloteaux, Benoit Lindquist, Susan Barabási, Albert‐László Hill, David E Aloy, Patrick Cusick, Michael E Xia, Yu Roth, Frederick P Vidal, Marc Mol Syst Biol Articles In cellular systems, biophysical interactions between macromolecules underlie a complex web of functional interactions. How biophysical and functional networks are coordinated, whether all biophysical interactions correspond to functional interactions, and how such biophysical‐versus‐functional network coordination is shaped by evolutionary forces are all largely unanswered questions. Here, we investigate these questions using an “inter‐interactome” approach. We systematically probed the yeast and human proteomes for interactions between proteins from these two species and functionally characterized the resulting inter‐interactome network. After a billion years of evolutionary divergence, the yeast and human proteomes are still capable of forming a biophysical network with properties that resemble those of intra‐species networks. Although substantially reduced relative to intra‐species networks, the levels of functional overlap in the yeast–human inter‐interactome network uncover significant remnants of co‐functionality widely preserved in the two proteomes beyond human–yeast homologs. Our data support evolutionary selection against biophysical interactions between proteins with little or no co‐functionality. Such non‐functional interactions, however, represent a reservoir from which nascent functional interactions may arise. John Wiley and Sons Inc. 2016-04-23 /pmc/articles/PMC4848758/ /pubmed/27107014 http://dx.doi.org/10.15252/msb.20156484 Text en © 2016 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the Creative Commons Attribution 4.0 (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Zhong, Quan
Pevzner, Samuel J
Hao, Tong
Wang, Yang
Mosca, Roberto
Menche, Jörg
Taipale, Mikko
Taşan, Murat
Fan, Changyu
Yang, Xinping
Haley, Patrick
Murray, Ryan R
Mer, Flora
Gebreab, Fana
Tam, Stanley
MacWilliams, Andrew
Dricot, Amélie
Reichert, Patrick
Santhanam, Balaji
Ghamsari, Lila
Calderwood, Michael A
Rolland, Thomas
Charloteaux, Benoit
Lindquist, Susan
Barabási, Albert‐László
Hill, David E
Aloy, Patrick
Cusick, Michael E
Xia, Yu
Roth, Frederick P
Vidal, Marc
An inter‐species protein–protein interaction network across vast evolutionary distance
title An inter‐species protein–protein interaction network across vast evolutionary distance
title_full An inter‐species protein–protein interaction network across vast evolutionary distance
title_fullStr An inter‐species protein–protein interaction network across vast evolutionary distance
title_full_unstemmed An inter‐species protein–protein interaction network across vast evolutionary distance
title_short An inter‐species protein–protein interaction network across vast evolutionary distance
title_sort inter‐species protein–protein interaction network across vast evolutionary distance
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848758/
https://www.ncbi.nlm.nih.gov/pubmed/27107014
http://dx.doi.org/10.15252/msb.20156484
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