Inactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response

Double stranded DNA breaks are generated during rearrangements of lymphocyte antigen receptors. Here the authors show that the DNA breaks induce phosphorylation of nuclear GSK3β at Ser389/Thr390, protecting the activated lymphocytes from necroptosis-mediated cell death.

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Autores principales: Tina M. Thornton, Pilar Delgado, Liang Chen, Beatriz Salas, Dimitry Krementsov, Miriam Fernandez, Santiago Vernia, Roger J. Davis, Ruth Heimann, Cory Teuscher, Michael S. Krangel, Almudena R. Ramiro, Mercedes Rincón
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/c6724a6232d643268dc7f38ec902b517
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spelling oai:doaj.org-article:c6724a6232d643268dc7f38ec902b5172021-12-02T17:31:51ZInactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response10.1038/ncomms105532041-1723https://doaj.org/article/c6724a6232d643268dc7f38ec902b5172016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10553https://doaj.org/toc/2041-1723Double stranded DNA breaks are generated during rearrangements of lymphocyte antigen receptors. Here the authors show that the DNA breaks induce phosphorylation of nuclear GSK3β at Ser389/Thr390, protecting the activated lymphocytes from necroptosis-mediated cell death.Tina M. ThorntonPilar DelgadoLiang ChenBeatriz SalasDimitry KrementsovMiriam FernandezSantiago VerniaRoger J. DavisRuth HeimannCory TeuscherMichael S. KrangelAlmudena R. RamiroMercedes RincónNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-12 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tina M. Thornton
Pilar Delgado
Liang Chen
Beatriz Salas
Dimitry Krementsov
Miriam Fernandez
Santiago Vernia
Roger J. Davis
Ruth Heimann
Cory Teuscher
Michael S. Krangel
Almudena R. Ramiro
Mercedes Rincón
Inactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response
description Double stranded DNA breaks are generated during rearrangements of lymphocyte antigen receptors. Here the authors show that the DNA breaks induce phosphorylation of nuclear GSK3β at Ser389/Thr390, protecting the activated lymphocytes from necroptosis-mediated cell death.
format article
author Tina M. Thornton
Pilar Delgado
Liang Chen
Beatriz Salas
Dimitry Krementsov
Miriam Fernandez
Santiago Vernia
Roger J. Davis
Ruth Heimann
Cory Teuscher
Michael S. Krangel
Almudena R. Ramiro
Mercedes Rincón
author_facet Tina M. Thornton
Pilar Delgado
Liang Chen
Beatriz Salas
Dimitry Krementsov
Miriam Fernandez
Santiago Vernia
Roger J. Davis
Ruth Heimann
Cory Teuscher
Michael S. Krangel
Almudena R. Ramiro
Mercedes Rincón
author_sort Tina M. Thornton
title Inactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response
title_short Inactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response
title_full Inactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response
title_fullStr Inactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response
title_full_unstemmed Inactivation of nuclear GSK3β by Ser389 phosphorylation promotes lymphocyte fitness during DNA double-strand break response
title_sort inactivation of nuclear gsk3β by ser389 phosphorylation promotes lymphocyte fitness during dna double-strand break response
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/c6724a6232d643268dc7f38ec902b517
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