Somatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan

Pluripotent stem cells are thought to require a highly active proteostatic machinery. Here, the authors show that CCT8, a subunit of the proteostatic chaperonin complex, is increased in pluripotent stem cells, and that overexpression of CCT8 in worms increases cellular proteostasis and organismal lo...

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Autores principales: Alireza Noormohammadi, Amirabbas Khodakarami, Ricardo Gutierrez-Garcia, Hyun Ju Lee, Seda Koyuncu, Tim König, Christina Schindler, Isabel Saez, Azra Fatima, Christoph Dieterich, David Vilchez
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/84731adf22554679bbacd32bdb3db949
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spelling oai:doaj.org-article:84731adf22554679bbacd32bdb3db9492021-12-02T15:35:41ZSomatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan10.1038/ncomms136492041-1723https://doaj.org/article/84731adf22554679bbacd32bdb3db9492016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13649https://doaj.org/toc/2041-1723Pluripotent stem cells are thought to require a highly active proteostatic machinery. Here, the authors show that CCT8, a subunit of the proteostatic chaperonin complex, is increased in pluripotent stem cells, and that overexpression of CCT8 in worms increases cellular proteostasis and organismal longevity.Alireza NoormohammadiAmirabbas KhodakaramiRicardo Gutierrez-GarciaHyun Ju LeeSeda KoyuncuTim KönigChristina SchindlerIsabel SaezAzra FatimaChristoph DieterichDavid VilchezNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-15 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Alireza Noormohammadi
Amirabbas Khodakarami
Ricardo Gutierrez-Garcia
Hyun Ju Lee
Seda Koyuncu
Tim König
Christina Schindler
Isabel Saez
Azra Fatima
Christoph Dieterich
David Vilchez
Somatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan
description Pluripotent stem cells are thought to require a highly active proteostatic machinery. Here, the authors show that CCT8, a subunit of the proteostatic chaperonin complex, is increased in pluripotent stem cells, and that overexpression of CCT8 in worms increases cellular proteostasis and organismal longevity.
format article
author Alireza Noormohammadi
Amirabbas Khodakarami
Ricardo Gutierrez-Garcia
Hyun Ju Lee
Seda Koyuncu
Tim König
Christina Schindler
Isabel Saez
Azra Fatima
Christoph Dieterich
David Vilchez
author_facet Alireza Noormohammadi
Amirabbas Khodakarami
Ricardo Gutierrez-Garcia
Hyun Ju Lee
Seda Koyuncu
Tim König
Christina Schindler
Isabel Saez
Azra Fatima
Christoph Dieterich
David Vilchez
author_sort Alireza Noormohammadi
title Somatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan
title_short Somatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan
title_full Somatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan
title_fullStr Somatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan
title_full_unstemmed Somatic increase of CCT8 mimics proteostasis of human pluripotent stem cells and extends C. elegans lifespan
title_sort somatic increase of cct8 mimics proteostasis of human pluripotent stem cells and extends c. elegans lifespan
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/84731adf22554679bbacd32bdb3db949
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