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A reference map of the human binary protein interactome
Global insights into cellular organization and genome function require comprehensive understanding of the interactome networks that mediate genotype-phenotype relationships(1,2). Here, we present a human “all-by-all” reference interactome map of human binary protein interactions, or “HuRI”. With ~53...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7169983/ https://www.ncbi.nlm.nih.gov/pubmed/32296183 http://dx.doi.org/10.1038/s41586-020-2188-x |
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author | Luck, Katja Kim, Dae-Kyum Lambourne, Luke Spirohn, Kerstin Begg, Bridget E. Bian, Wenting Brignall, Ruth Cafarelli, Tiziana Campos-Laborie, Francisco J. Charloteaux, Benoit Choi, Dongsic Coté, Atina G. Daley, Meaghan Deimling, Steven Desbuleux, Alice Dricot, Amélie Gebbia, Marinella Hardy, Madeleine F. Kishore, Nishka Knapp, Jennifer J. Kovács, István A. Lemmens, Irma Mee, Miles W. Mellor, Joseph C. Pollis, Carl Pons, Carles Richardson, Aaron D. Schlabach, Sadie Teeking, Bridget Yadav, Anupama Babor, Mariana Balcha, Dawit Basha, Omer Bowman-Colin, Christian Chin, Suet-Feung Choi, Soon Gang Colabella, Claudia Coppin, Georges D’Amata, Cassandra Ridder, David De Rouck, Steffi De Duran-Frigola, Miquel Ennajdaoui, Hanane Goebels, Florian Goehring, Liana Gopal, Anjali Haddad, Ghazal Hatchi, Elodie Helmy, Mohamed Jacob, Yves Kassa, Yoseph Landini, Serena Li, Roujia van Lieshout, Natascha MacWilliams, Andrew Markey, Dylan Paulson, Joseph N. Rangarajan, Sudharshan Rasla, John Rayhan, Ashyad Rolland, Thomas San-Miguel, Adriana Shen, Yun Sheykhkarimli, Dayag Sheynkman, Gloria M. Simonovsky, Eyal Taşan, Murat Tejeda, Alexander Tropepe, Vincent Twizere, Jean-Claude Wang, Yang Weatheritt, Robert J. Weile, Jochen Xia, Yu Yang, Xinping Yeger-Lotem, Esti Zhong, Quan Aloy, Patrick Bader, Gary D. Rivas, Javier De Las Gaudet, Suzanne Hao, Tong Rak, Janusz Tavernier, Jan Hill, David E. Vidal, Marc Roth, Frederick P. Calderwood, Michael A. |
author_facet | Luck, Katja Kim, Dae-Kyum Lambourne, Luke Spirohn, Kerstin Begg, Bridget E. Bian, Wenting Brignall, Ruth Cafarelli, Tiziana Campos-Laborie, Francisco J. Charloteaux, Benoit Choi, Dongsic Coté, Atina G. Daley, Meaghan Deimling, Steven Desbuleux, Alice Dricot, Amélie Gebbia, Marinella Hardy, Madeleine F. Kishore, Nishka Knapp, Jennifer J. Kovács, István A. Lemmens, Irma Mee, Miles W. Mellor, Joseph C. Pollis, Carl Pons, Carles Richardson, Aaron D. Schlabach, Sadie Teeking, Bridget Yadav, Anupama Babor, Mariana Balcha, Dawit Basha, Omer Bowman-Colin, Christian Chin, Suet-Feung Choi, Soon Gang Colabella, Claudia Coppin, Georges D’Amata, Cassandra Ridder, David De Rouck, Steffi De Duran-Frigola, Miquel Ennajdaoui, Hanane Goebels, Florian Goehring, Liana Gopal, Anjali Haddad, Ghazal Hatchi, Elodie Helmy, Mohamed Jacob, Yves Kassa, Yoseph Landini, Serena Li, Roujia van Lieshout, Natascha MacWilliams, Andrew Markey, Dylan Paulson, Joseph N. Rangarajan, Sudharshan Rasla, John Rayhan, Ashyad Rolland, Thomas San-Miguel, Adriana Shen, Yun Sheykhkarimli, Dayag Sheynkman, Gloria M. Simonovsky, Eyal Taşan, Murat Tejeda, Alexander Tropepe, Vincent Twizere, Jean-Claude Wang, Yang Weatheritt, Robert J. Weile, Jochen Xia, Yu Yang, Xinping Yeger-Lotem, Esti Zhong, Quan Aloy, Patrick Bader, Gary D. Rivas, Javier De Las Gaudet, Suzanne Hao, Tong Rak, Janusz Tavernier, Jan Hill, David E. Vidal, Marc Roth, Frederick P. Calderwood, Michael A. |
author_sort | Luck, Katja |
collection | PubMed |
description | Global insights into cellular organization and genome function require comprehensive understanding of the interactome networks that mediate genotype-phenotype relationships(1,2). Here, we present a human “all-by-all” reference interactome map of human binary protein interactions, or “HuRI”. With ~53,000 high-quality protein-protein interactions (PPIs), HuRI has approximately four times more such interactions than high-quality curated interactions from small-scale studies. Integrating HuRI with genome(3), transcriptome(4), and proteome(5) data enables the study of cellular function within most physiological or pathological cellular contexts. We demonstrate the utility of HuRI in identifying specific subcellular roles of PPIs. Inferred tissue-specific networks reveal general principles for the formation of cellular context-specific functions and elucidate potential molecular mechanisms underlying tissue-specific phenotypes of Mendelian diseases. HuRI represents a systematic proteome-wide reference linking genomic variation to phenotypic outcomes. |
format | Online Article Text |
id | pubmed-7169983 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
record_format | MEDLINE/PubMed |
spelling | pubmed-71699832020-10-08 A reference map of the human binary protein interactome Luck, Katja Kim, Dae-Kyum Lambourne, Luke Spirohn, Kerstin Begg, Bridget E. Bian, Wenting Brignall, Ruth Cafarelli, Tiziana Campos-Laborie, Francisco J. Charloteaux, Benoit Choi, Dongsic Coté, Atina G. Daley, Meaghan Deimling, Steven Desbuleux, Alice Dricot, Amélie Gebbia, Marinella Hardy, Madeleine F. Kishore, Nishka Knapp, Jennifer J. Kovács, István A. Lemmens, Irma Mee, Miles W. Mellor, Joseph C. Pollis, Carl Pons, Carles Richardson, Aaron D. Schlabach, Sadie Teeking, Bridget Yadav, Anupama Babor, Mariana Balcha, Dawit Basha, Omer Bowman-Colin, Christian Chin, Suet-Feung Choi, Soon Gang Colabella, Claudia Coppin, Georges D’Amata, Cassandra Ridder, David De Rouck, Steffi De Duran-Frigola, Miquel Ennajdaoui, Hanane Goebels, Florian Goehring, Liana Gopal, Anjali Haddad, Ghazal Hatchi, Elodie Helmy, Mohamed Jacob, Yves Kassa, Yoseph Landini, Serena Li, Roujia van Lieshout, Natascha MacWilliams, Andrew Markey, Dylan Paulson, Joseph N. Rangarajan, Sudharshan Rasla, John Rayhan, Ashyad Rolland, Thomas San-Miguel, Adriana Shen, Yun Sheykhkarimli, Dayag Sheynkman, Gloria M. Simonovsky, Eyal Taşan, Murat Tejeda, Alexander Tropepe, Vincent Twizere, Jean-Claude Wang, Yang Weatheritt, Robert J. Weile, Jochen Xia, Yu Yang, Xinping Yeger-Lotem, Esti Zhong, Quan Aloy, Patrick Bader, Gary D. Rivas, Javier De Las Gaudet, Suzanne Hao, Tong Rak, Janusz Tavernier, Jan Hill, David E. Vidal, Marc Roth, Frederick P. Calderwood, Michael A. Nature Article Global insights into cellular organization and genome function require comprehensive understanding of the interactome networks that mediate genotype-phenotype relationships(1,2). Here, we present a human “all-by-all” reference interactome map of human binary protein interactions, or “HuRI”. With ~53,000 high-quality protein-protein interactions (PPIs), HuRI has approximately four times more such interactions than high-quality curated interactions from small-scale studies. Integrating HuRI with genome(3), transcriptome(4), and proteome(5) data enables the study of cellular function within most physiological or pathological cellular contexts. We demonstrate the utility of HuRI in identifying specific subcellular roles of PPIs. Inferred tissue-specific networks reveal general principles for the formation of cellular context-specific functions and elucidate potential molecular mechanisms underlying tissue-specific phenotypes of Mendelian diseases. HuRI represents a systematic proteome-wide reference linking genomic variation to phenotypic outcomes. 2020-04-08 2020-04 /pmc/articles/PMC7169983/ /pubmed/32296183 http://dx.doi.org/10.1038/s41586-020-2188-x Text en Reprints and permissions information is available at http://www.nature.com/reprints. Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms |
spellingShingle | Article Luck, Katja Kim, Dae-Kyum Lambourne, Luke Spirohn, Kerstin Begg, Bridget E. Bian, Wenting Brignall, Ruth Cafarelli, Tiziana Campos-Laborie, Francisco J. Charloteaux, Benoit Choi, Dongsic Coté, Atina G. Daley, Meaghan Deimling, Steven Desbuleux, Alice Dricot, Amélie Gebbia, Marinella Hardy, Madeleine F. Kishore, Nishka Knapp, Jennifer J. Kovács, István A. Lemmens, Irma Mee, Miles W. Mellor, Joseph C. Pollis, Carl Pons, Carles Richardson, Aaron D. Schlabach, Sadie Teeking, Bridget Yadav, Anupama Babor, Mariana Balcha, Dawit Basha, Omer Bowman-Colin, Christian Chin, Suet-Feung Choi, Soon Gang Colabella, Claudia Coppin, Georges D’Amata, Cassandra Ridder, David De Rouck, Steffi De Duran-Frigola, Miquel Ennajdaoui, Hanane Goebels, Florian Goehring, Liana Gopal, Anjali Haddad, Ghazal Hatchi, Elodie Helmy, Mohamed Jacob, Yves Kassa, Yoseph Landini, Serena Li, Roujia van Lieshout, Natascha MacWilliams, Andrew Markey, Dylan Paulson, Joseph N. Rangarajan, Sudharshan Rasla, John Rayhan, Ashyad Rolland, Thomas San-Miguel, Adriana Shen, Yun Sheykhkarimli, Dayag Sheynkman, Gloria M. Simonovsky, Eyal Taşan, Murat Tejeda, Alexander Tropepe, Vincent Twizere, Jean-Claude Wang, Yang Weatheritt, Robert J. Weile, Jochen Xia, Yu Yang, Xinping Yeger-Lotem, Esti Zhong, Quan Aloy, Patrick Bader, Gary D. Rivas, Javier De Las Gaudet, Suzanne Hao, Tong Rak, Janusz Tavernier, Jan Hill, David E. Vidal, Marc Roth, Frederick P. Calderwood, Michael A. A reference map of the human binary protein interactome |
title | A reference map of the human binary protein interactome |
title_full | A reference map of the human binary protein interactome |
title_fullStr | A reference map of the human binary protein interactome |
title_full_unstemmed | A reference map of the human binary protein interactome |
title_short | A reference map of the human binary protein interactome |
title_sort | reference map of the human binary protein interactome |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7169983/ https://www.ncbi.nlm.nih.gov/pubmed/32296183 http://dx.doi.org/10.1038/s41586-020-2188-x |
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