Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation

RIPK1 kinase activity is known to transduce a death signal, but the molecular mechanisms that normally prevent RIPK1 activation are unclear. Here, the authors report that IKK-mediated phosphorylation on RIPK1 Ser25 directly represses its enzymatic activity and thus RIPK1-dependent cell death.

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Autores principales: Yves Dondelinger, Tom Delanghe, Dario Priem, Meghan A. Wynosky-Dolfi, Daniel Sorobetea, Diego Rojas-Rivera, Piero Giansanti, Ria Roelandt, Julia Gropengiesser, Klaus Ruckdeschel, Savvas N. Savvides, Albert J. R. Heck, Peter Vandenabeele, Igor E. Brodsky, Mathieu J. M. Bertrand
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/09b6a96e862a47278fdf07e7af978602
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spelling oai:doaj.org-article:09b6a96e862a47278fdf07e7af9786022021-12-02T14:39:18ZSerine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation10.1038/s41467-019-09690-02041-1723https://doaj.org/article/09b6a96e862a47278fdf07e7af9786022019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09690-0https://doaj.org/toc/2041-1723RIPK1 kinase activity is known to transduce a death signal, but the molecular mechanisms that normally prevent RIPK1 activation are unclear. Here, the authors report that IKK-mediated phosphorylation on RIPK1 Ser25 directly represses its enzymatic activity and thus RIPK1-dependent cell death.Yves DondelingerTom DelangheDario PriemMeghan A. Wynosky-DolfiDaniel SorobeteaDiego Rojas-RiveraPiero GiansantiRia RoelandtJulia GropengiesserKlaus RuckdeschelSavvas N. SavvidesAlbert J. R. HeckPeter VandenabeeleIgor E. BrodskyMathieu J. M. BertrandNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-16 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yves Dondelinger
Tom Delanghe
Dario Priem
Meghan A. Wynosky-Dolfi
Daniel Sorobetea
Diego Rojas-Rivera
Piero Giansanti
Ria Roelandt
Julia Gropengiesser
Klaus Ruckdeschel
Savvas N. Savvides
Albert J. R. Heck
Peter Vandenabeele
Igor E. Brodsky
Mathieu J. M. Bertrand
Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation
description RIPK1 kinase activity is known to transduce a death signal, but the molecular mechanisms that normally prevent RIPK1 activation are unclear. Here, the authors report that IKK-mediated phosphorylation on RIPK1 Ser25 directly represses its enzymatic activity and thus RIPK1-dependent cell death.
format article
author Yves Dondelinger
Tom Delanghe
Dario Priem
Meghan A. Wynosky-Dolfi
Daniel Sorobetea
Diego Rojas-Rivera
Piero Giansanti
Ria Roelandt
Julia Gropengiesser
Klaus Ruckdeschel
Savvas N. Savvides
Albert J. R. Heck
Peter Vandenabeele
Igor E. Brodsky
Mathieu J. M. Bertrand
author_facet Yves Dondelinger
Tom Delanghe
Dario Priem
Meghan A. Wynosky-Dolfi
Daniel Sorobetea
Diego Rojas-Rivera
Piero Giansanti
Ria Roelandt
Julia Gropengiesser
Klaus Ruckdeschel
Savvas N. Savvides
Albert J. R. Heck
Peter Vandenabeele
Igor E. Brodsky
Mathieu J. M. Bertrand
author_sort Yves Dondelinger
title Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation
title_short Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation
title_full Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation
title_fullStr Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation
title_full_unstemmed Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation
title_sort serine 25 phosphorylation inhibits ripk1 kinase-dependent cell death in models of infection and inflammation
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/09b6a96e862a47278fdf07e7af978602
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