Sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division

Asymmetric segregation of cell fate determinants during cell division governs daughter cell fate. Here the authors show that Sara endosomes, known to regulate Notch signalling, are targeted to the mitotic spindle and once phosphorylated are asymmetrically dispatched into a daughter cell to determine...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Sylvain Loubéry, Alicia Daeden, Carole Seum, Laurent Holtzer, Ana Moraleda, Nicolas Damond, Emmanuel Derivery, Thomas Schmidt, Marcos Gonzalez-Gaitan
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
Materias:
Q
Acceso en línea:https://doaj.org/article/4e05d4052c0e463fa6494f9179a2fc71
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:4e05d4052c0e463fa6494f9179a2fc71
record_format dspace
spelling oai:doaj.org-article:4e05d4052c0e463fa6494f9179a2fc712021-12-02T17:01:24ZSara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division10.1038/ncomms152852041-1723https://doaj.org/article/4e05d4052c0e463fa6494f9179a2fc712017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15285https://doaj.org/toc/2041-1723Asymmetric segregation of cell fate determinants during cell division governs daughter cell fate. Here the authors show that Sara endosomes, known to regulate Notch signalling, are targeted to the mitotic spindle and once phosphorylated are asymmetrically dispatched into a daughter cell to determine cell fate.Sylvain LoubéryAlicia DaedenCarole SeumLaurent HoltzerAna MoraledaNicolas DamondEmmanuel DeriveryThomas SchmidtMarcos Gonzalez-GaitanNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sylvain Loubéry
Alicia Daeden
Carole Seum
Laurent Holtzer
Ana Moraleda
Nicolas Damond
Emmanuel Derivery
Thomas Schmidt
Marcos Gonzalez-Gaitan
Sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division
description Asymmetric segregation of cell fate determinants during cell division governs daughter cell fate. Here the authors show that Sara endosomes, known to regulate Notch signalling, are targeted to the mitotic spindle and once phosphorylated are asymmetrically dispatched into a daughter cell to determine cell fate.
format article
author Sylvain Loubéry
Alicia Daeden
Carole Seum
Laurent Holtzer
Ana Moraleda
Nicolas Damond
Emmanuel Derivery
Thomas Schmidt
Marcos Gonzalez-Gaitan
author_facet Sylvain Loubéry
Alicia Daeden
Carole Seum
Laurent Holtzer
Ana Moraleda
Nicolas Damond
Emmanuel Derivery
Thomas Schmidt
Marcos Gonzalez-Gaitan
author_sort Sylvain Loubéry
title Sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division
title_short Sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division
title_full Sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division
title_fullStr Sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division
title_full_unstemmed Sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division
title_sort sara phosphorylation state controls the dispatch of endosomes from the central spindle during asymmetric division
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/4e05d4052c0e463fa6494f9179a2fc71
work_keys_str_mv AT sylvainloubery saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT aliciadaeden saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT caroleseum saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT laurentholtzer saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT anamoraleda saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT nicolasdamond saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT emmanuelderivery saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT thomasschmidt saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
AT marcosgonzalezgaitan saraphosphorylationstatecontrolsthedispatchofendosomesfromthecentralspindleduringasymmetricdivision
_version_ 1718382145468104704