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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Nature Portfolio
2019
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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) |
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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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