Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system

How intracellular cAMP activate PKA is well-characterized, but PKA inactivation remains poorly understood. Here, Rinaldi et al. show that CHIP/HSP70 ubiquitinates the catalytic subunit of PKA, with implications for the human disease spinocerebellar ataxia 16, as patients often have CHIP mutations.

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Autores principales: Laura Rinaldi, Rossella Delle Donne, Bruno Catalanotti, Omar Torres-Quesada, Florian Enzler, Federica Moraca, Robert Nisticò, Francesco Chiuso, Sonia Piccinin, Verena Bachmann, Herbert H Lindner, Corrado Garbi, Antonella Scorziello, Nicola Antonino Russo, Matthis Synofzik, Ulrich Stelzl, Lucio Annunziato, Eduard Stefan, Antonio Feliciello
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/365bbfa6102046adbb84b30bd59fe56c
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spelling oai:doaj.org-article:365bbfa6102046adbb84b30bd59fe56c2021-12-02T16:58:02ZFeedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system10.1038/s41467-019-10037-y2041-1723https://doaj.org/article/365bbfa6102046adbb84b30bd59fe56c2019-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10037-yhttps://doaj.org/toc/2041-1723How intracellular cAMP activate PKA is well-characterized, but PKA inactivation remains poorly understood. Here, Rinaldi et al. show that CHIP/HSP70 ubiquitinates the catalytic subunit of PKA, with implications for the human disease spinocerebellar ataxia 16, as patients often have CHIP mutations.Laura RinaldiRossella Delle DonneBruno CatalanottiOmar Torres-QuesadaFlorian EnzlerFederica MoracaRobert NisticòFrancesco ChiusoSonia PiccininVerena BachmannHerbert H LindnerCorrado GarbiAntonella ScorzielloNicola Antonino RussoMatthis SynofzikUlrich StelzlLucio AnnunziatoEduard StefanAntonio FelicielloNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Laura Rinaldi
Rossella Delle Donne
Bruno Catalanotti
Omar Torres-Quesada
Florian Enzler
Federica Moraca
Robert Nisticò
Francesco Chiuso
Sonia Piccinin
Verena Bachmann
Herbert H Lindner
Corrado Garbi
Antonella Scorziello
Nicola Antonino Russo
Matthis Synofzik
Ulrich Stelzl
Lucio Annunziato
Eduard Stefan
Antonio Feliciello
Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system
description How intracellular cAMP activate PKA is well-characterized, but PKA inactivation remains poorly understood. Here, Rinaldi et al. show that CHIP/HSP70 ubiquitinates the catalytic subunit of PKA, with implications for the human disease spinocerebellar ataxia 16, as patients often have CHIP mutations.
format article
author Laura Rinaldi
Rossella Delle Donne
Bruno Catalanotti
Omar Torres-Quesada
Florian Enzler
Federica Moraca
Robert Nisticò
Francesco Chiuso
Sonia Piccinin
Verena Bachmann
Herbert H Lindner
Corrado Garbi
Antonella Scorziello
Nicola Antonino Russo
Matthis Synofzik
Ulrich Stelzl
Lucio Annunziato
Eduard Stefan
Antonio Feliciello
author_facet Laura Rinaldi
Rossella Delle Donne
Bruno Catalanotti
Omar Torres-Quesada
Florian Enzler
Federica Moraca
Robert Nisticò
Francesco Chiuso
Sonia Piccinin
Verena Bachmann
Herbert H Lindner
Corrado Garbi
Antonella Scorziello
Nicola Antonino Russo
Matthis Synofzik
Ulrich Stelzl
Lucio Annunziato
Eduard Stefan
Antonio Feliciello
author_sort Laura Rinaldi
title Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system
title_short Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system
title_full Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system
title_fullStr Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system
title_full_unstemmed Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system
title_sort feedback inhibition of camp effector signaling by a chaperone-assisted ubiquitin system
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/365bbfa6102046adbb84b30bd59fe56c
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