Notch regulates BMP responsiveness and lateral branching in vessel networks via SMAD6

The mechanism underlying endothelial cell responses to BMP signals is unknown. Here, the authors show that the endothelial response to pro-angiogenic BMP ligands is regulated by Notch via its effect on SMAD6, a known inhibitor of BMP intracellular signaling cascade.

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Autores principales: Kevin P. Mouillesseaux, David S. Wiley, Lauren M. Saunders, Lyndsay A. Wylie, Erich J. Kushner, Diana C. Chong, Kathryn M. Citrin, Andrew T. Barber, Youngsook Park, Jun-Dae Kim, Leigh Ann Samsa, Jongmin Kim, Jiandong Liu, Suk-Won Jin, Victoria L. Bautch
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/44b4ac900f6945ee9370e7b87a8009d9
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spelling oai:doaj.org-article:44b4ac900f6945ee9370e7b87a8009d92021-12-02T17:31:18ZNotch regulates BMP responsiveness and lateral branching in vessel networks via SMAD610.1038/ncomms132472041-1723https://doaj.org/article/44b4ac900f6945ee9370e7b87a8009d92016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13247https://doaj.org/toc/2041-1723The mechanism underlying endothelial cell responses to BMP signals is unknown. Here, the authors show that the endothelial response to pro-angiogenic BMP ligands is regulated by Notch via its effect on SMAD6, a known inhibitor of BMP intracellular signaling cascade.Kevin P. MouillesseauxDavid S. WileyLauren M. SaundersLyndsay A. WylieErich J. KushnerDiana C. ChongKathryn M. CitrinAndrew T. BarberYoungsook ParkJun-Dae KimLeigh Ann SamsaJongmin KimJiandong LiuSuk-Won JinVictoria L. BautchNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-12 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kevin P. Mouillesseaux
David S. Wiley
Lauren M. Saunders
Lyndsay A. Wylie
Erich J. Kushner
Diana C. Chong
Kathryn M. Citrin
Andrew T. Barber
Youngsook Park
Jun-Dae Kim
Leigh Ann Samsa
Jongmin Kim
Jiandong Liu
Suk-Won Jin
Victoria L. Bautch
Notch regulates BMP responsiveness and lateral branching in vessel networks via SMAD6
description The mechanism underlying endothelial cell responses to BMP signals is unknown. Here, the authors show that the endothelial response to pro-angiogenic BMP ligands is regulated by Notch via its effect on SMAD6, a known inhibitor of BMP intracellular signaling cascade.
format article
author Kevin P. Mouillesseaux
David S. Wiley
Lauren M. Saunders
Lyndsay A. Wylie
Erich J. Kushner
Diana C. Chong
Kathryn M. Citrin
Andrew T. Barber
Youngsook Park
Jun-Dae Kim
Leigh Ann Samsa
Jongmin Kim
Jiandong Liu
Suk-Won Jin
Victoria L. Bautch
author_facet Kevin P. Mouillesseaux
David S. Wiley
Lauren M. Saunders
Lyndsay A. Wylie
Erich J. Kushner
Diana C. Chong
Kathryn M. Citrin
Andrew T. Barber
Youngsook Park
Jun-Dae Kim
Leigh Ann Samsa
Jongmin Kim
Jiandong Liu
Suk-Won Jin
Victoria L. Bautch
author_sort Kevin P. Mouillesseaux
title Notch regulates BMP responsiveness and lateral branching in vessel networks via SMAD6
title_short Notch regulates BMP responsiveness and lateral branching in vessel networks via SMAD6
title_full Notch regulates BMP responsiveness and lateral branching in vessel networks via SMAD6
title_fullStr Notch regulates BMP responsiveness and lateral branching in vessel networks via SMAD6
title_full_unstemmed Notch regulates BMP responsiveness and lateral branching in vessel networks via SMAD6
title_sort notch regulates bmp responsiveness and lateral branching in vessel networks via smad6
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/44b4ac900f6945ee9370e7b87a8009d9
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