Post-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits

Molecular mechanisms controlling axonal growth cone behaviour are only partially understood. Here the authors reveal a role of an adaptor protein GIPC1 in Plexin-D1 receptor recycling, and show that this process is required for axon track formation and vascular patterning in mice.

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Autores principales: Katja Burk, Erik Mire, Anaïs Bellon, Mélanie Hocine, Jeremy Guillot, Filipa Moraes, Yutaka Yoshida, Michael Simons, Sophie Chauvet, Fanny Mann
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/0c33279192a44b8494aa04a9da0571f5
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spelling oai:doaj.org-article:0c33279192a44b8494aa04a9da0571f52021-12-02T17:06:05ZPost-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits10.1038/ncomms145082041-1723https://doaj.org/article/0c33279192a44b8494aa04a9da0571f52017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14508https://doaj.org/toc/2041-1723Molecular mechanisms controlling axonal growth cone behaviour are only partially understood. Here the authors reveal a role of an adaptor protein GIPC1 in Plexin-D1 receptor recycling, and show that this process is required for axon track formation and vascular patterning in mice.Katja BurkErik MireAnaïs BellonMélanie HocineJeremy GuillotFilipa MoraesYutaka YoshidaMichael SimonsSophie ChauvetFanny MannNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-17 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Katja Burk
Erik Mire
Anaïs Bellon
Mélanie Hocine
Jeremy Guillot
Filipa Moraes
Yutaka Yoshida
Michael Simons
Sophie Chauvet
Fanny Mann
Post-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits
description Molecular mechanisms controlling axonal growth cone behaviour are only partially understood. Here the authors reveal a role of an adaptor protein GIPC1 in Plexin-D1 receptor recycling, and show that this process is required for axon track formation and vascular patterning in mice.
format article
author Katja Burk
Erik Mire
Anaïs Bellon
Mélanie Hocine
Jeremy Guillot
Filipa Moraes
Yutaka Yoshida
Michael Simons
Sophie Chauvet
Fanny Mann
author_facet Katja Burk
Erik Mire
Anaïs Bellon
Mélanie Hocine
Jeremy Guillot
Filipa Moraes
Yutaka Yoshida
Michael Simons
Sophie Chauvet
Fanny Mann
author_sort Katja Burk
title Post-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits
title_short Post-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits
title_full Post-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits
title_fullStr Post-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits
title_full_unstemmed Post-endocytic sorting of Plexin-D1 controls signal transduction and development of axonal and vascular circuits
title_sort post-endocytic sorting of plexin-d1 controls signal transduction and development of axonal and vascular circuits
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/0c33279192a44b8494aa04a9da0571f5
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