The landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones

Tissue-specific differences in protein folding capacities are poorly understood. Here, the authors show that the human chaperone system consists of ubiquitous core chaperones and tissue-specific variable chaperones, perturbation of which leads to tissue-specific phenotypes.

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Autores principales: Netta Shemesh, Juman Jubran, Shiran Dror, Eyal Simonovsky, Omer Basha, Chanan Argov, Idan Hekselman, Mehtap Abu-Qarn, Ekaterina Vinogradov, Omry Mauer, Tatiana Tiago, Serena Carra, Anat Ben-Zvi, Esti Yeger-Lotem
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/b6aba57ae59741e89406ba11b3f77eab
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spelling oai:doaj.org-article:b6aba57ae59741e89406ba11b3f77eab2021-12-02T14:30:28ZThe landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones10.1038/s41467-021-22369-92041-1723https://doaj.org/article/b6aba57ae59741e89406ba11b3f77eab2021-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22369-9https://doaj.org/toc/2041-1723Tissue-specific differences in protein folding capacities are poorly understood. Here, the authors show that the human chaperone system consists of ubiquitous core chaperones and tissue-specific variable chaperones, perturbation of which leads to tissue-specific phenotypes.Netta ShemeshJuman JubranShiran DrorEyal SimonovskyOmer BashaChanan ArgovIdan HekselmanMehtap Abu-QarnEkaterina VinogradovOmry MauerTatiana TiagoSerena CarraAnat Ben-ZviEsti Yeger-LotemNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Netta Shemesh
Juman Jubran
Shiran Dror
Eyal Simonovsky
Omer Basha
Chanan Argov
Idan Hekselman
Mehtap Abu-Qarn
Ekaterina Vinogradov
Omry Mauer
Tatiana Tiago
Serena Carra
Anat Ben-Zvi
Esti Yeger-Lotem
The landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones
description Tissue-specific differences in protein folding capacities are poorly understood. Here, the authors show that the human chaperone system consists of ubiquitous core chaperones and tissue-specific variable chaperones, perturbation of which leads to tissue-specific phenotypes.
format article
author Netta Shemesh
Juman Jubran
Shiran Dror
Eyal Simonovsky
Omer Basha
Chanan Argov
Idan Hekselman
Mehtap Abu-Qarn
Ekaterina Vinogradov
Omry Mauer
Tatiana Tiago
Serena Carra
Anat Ben-Zvi
Esti Yeger-Lotem
author_facet Netta Shemesh
Juman Jubran
Shiran Dror
Eyal Simonovsky
Omer Basha
Chanan Argov
Idan Hekselman
Mehtap Abu-Qarn
Ekaterina Vinogradov
Omry Mauer
Tatiana Tiago
Serena Carra
Anat Ben-Zvi
Esti Yeger-Lotem
author_sort Netta Shemesh
title The landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones
title_short The landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones
title_full The landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones
title_fullStr The landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones
title_full_unstemmed The landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones
title_sort landscape of molecular chaperones across human tissues reveals a layered architecture of core and variable chaperones
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/b6aba57ae59741e89406ba11b3f77eab
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