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Mapping the functional yeast ABC transporter interactome

ABC transporters are a ubiquitous class of integral membrane proteins of immense clinical interest because of their strong association with human disease and pharmacology. To improve our understanding of these proteins, we used Membrane Yeast Two-Hybrid (MYTH) technology to map the protein interacto...

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Autores principales: Snider, Jamie, Hanif, Asad, Lee, Mid Eum, Jin, Ke, Yu, Analyn R., Graham, Chris, Chuk, Matthew, Damjanovic, Dunja, Wierzbicka, Marta, Tang, Priscilla, Balderes, Dina, Wong, Victoria, Jessulat, Matthew, Darowski, Katelyn D., Luis, Bryan-Joseph San, Shevelev, Igor, Sturley, Stephen L, Boone, Charles, Greenblatt, Jack F., Zhang, Zhaolei, Paumi, Christian M., Babu, Mohan, Park, Hay-Oak, Michaelis, Susan, Stagljar, Igor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3835492/
https://www.ncbi.nlm.nih.gov/pubmed/23831759
http://dx.doi.org/10.1038/nchembio.1293
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author Snider, Jamie
Hanif, Asad
Lee, Mid Eum
Jin, Ke
Yu, Analyn R.
Graham, Chris
Chuk, Matthew
Damjanovic, Dunja
Wierzbicka, Marta
Tang, Priscilla
Balderes, Dina
Wong, Victoria
Jessulat, Matthew
Darowski, Katelyn D.
Luis, Bryan-Joseph San
Shevelev, Igor
Sturley, Stephen L
Boone, Charles
Greenblatt, Jack F.
Zhang, Zhaolei
Paumi, Christian M.
Babu, Mohan
Park, Hay-Oak
Michaelis, Susan
Stagljar, Igor
author_facet Snider, Jamie
Hanif, Asad
Lee, Mid Eum
Jin, Ke
Yu, Analyn R.
Graham, Chris
Chuk, Matthew
Damjanovic, Dunja
Wierzbicka, Marta
Tang, Priscilla
Balderes, Dina
Wong, Victoria
Jessulat, Matthew
Darowski, Katelyn D.
Luis, Bryan-Joseph San
Shevelev, Igor
Sturley, Stephen L
Boone, Charles
Greenblatt, Jack F.
Zhang, Zhaolei
Paumi, Christian M.
Babu, Mohan
Park, Hay-Oak
Michaelis, Susan
Stagljar, Igor
author_sort Snider, Jamie
collection PubMed
description ABC transporters are a ubiquitous class of integral membrane proteins of immense clinical interest because of their strong association with human disease and pharmacology. To improve our understanding of these proteins, we used Membrane Yeast Two-Hybrid (MYTH) technology to map the protein interactome of all non-mitochondrial ABC transporters in the model organism Saccharomy cescerevisiae, and combined this data with previously reported yeast ABC transporter interactions in the BioGRID database to generate a comprehensive, integrated interactome. We show that ABC transporters physically associate with proteins involved in a surprisingly diverse range of functions. We specifically examine the importance of the physical interactions of ABC transporters in both the regulation of one another and in the modulation of proteins involved in zinc homeostasis. The interaction network presented here will be a powerful resource for increasing our fundamental understanding of the cellular role and regulation of ABC transporters.
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spelling pubmed-38354922014-03-01 Mapping the functional yeast ABC transporter interactome Snider, Jamie Hanif, Asad Lee, Mid Eum Jin, Ke Yu, Analyn R. Graham, Chris Chuk, Matthew Damjanovic, Dunja Wierzbicka, Marta Tang, Priscilla Balderes, Dina Wong, Victoria Jessulat, Matthew Darowski, Katelyn D. Luis, Bryan-Joseph San Shevelev, Igor Sturley, Stephen L Boone, Charles Greenblatt, Jack F. Zhang, Zhaolei Paumi, Christian M. Babu, Mohan Park, Hay-Oak Michaelis, Susan Stagljar, Igor Nat Chem Biol Article ABC transporters are a ubiquitous class of integral membrane proteins of immense clinical interest because of their strong association with human disease and pharmacology. To improve our understanding of these proteins, we used Membrane Yeast Two-Hybrid (MYTH) technology to map the protein interactome of all non-mitochondrial ABC transporters in the model organism Saccharomy cescerevisiae, and combined this data with previously reported yeast ABC transporter interactions in the BioGRID database to generate a comprehensive, integrated interactome. We show that ABC transporters physically associate with proteins involved in a surprisingly diverse range of functions. We specifically examine the importance of the physical interactions of ABC transporters in both the regulation of one another and in the modulation of proteins involved in zinc homeostasis. The interaction network presented here will be a powerful resource for increasing our fundamental understanding of the cellular role and regulation of ABC transporters. 2013-07-07 2013-09 /pmc/articles/PMC3835492/ /pubmed/23831759 http://dx.doi.org/10.1038/nchembio.1293 Text en Users may view, print, copy, download and 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
Snider, Jamie
Hanif, Asad
Lee, Mid Eum
Jin, Ke
Yu, Analyn R.
Graham, Chris
Chuk, Matthew
Damjanovic, Dunja
Wierzbicka, Marta
Tang, Priscilla
Balderes, Dina
Wong, Victoria
Jessulat, Matthew
Darowski, Katelyn D.
Luis, Bryan-Joseph San
Shevelev, Igor
Sturley, Stephen L
Boone, Charles
Greenblatt, Jack F.
Zhang, Zhaolei
Paumi, Christian M.
Babu, Mohan
Park, Hay-Oak
Michaelis, Susan
Stagljar, Igor
Mapping the functional yeast ABC transporter interactome
title Mapping the functional yeast ABC transporter interactome
title_full Mapping the functional yeast ABC transporter interactome
title_fullStr Mapping the functional yeast ABC transporter interactome
title_full_unstemmed Mapping the functional yeast ABC transporter interactome
title_short Mapping the functional yeast ABC transporter interactome
title_sort mapping the functional yeast abc transporter interactome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3835492/
https://www.ncbi.nlm.nih.gov/pubmed/23831759
http://dx.doi.org/10.1038/nchembio.1293
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