Slug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis

Slug supports heart development and tumor metastasis, but its role in blood vessel formation is less clear. Here the authors show that endothelial cell-expressed Slug regulates both physiologic and pathological angiogenesis, at least in part through the modulation of Notch signalling.

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Autores principales: Nan W. Hultgren, Jennifer S. Fang, Mary E. Ziegler, Ricardo N. Ramirez, Duc T. T. Phan, Michaela M. S. Hatch, Katrina M. Welch-Reardon, Antonio E. Paniagua, Lin S. Kim, Nathan N. Shon, David S. Williams, Ali Mortazavi, Christopher C. W. Hughes
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/8e37d57515834f55b45498858d31ca32
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spelling oai:doaj.org-article:8e37d57515834f55b45498858d31ca322021-12-02T16:49:27ZSlug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis10.1038/s41467-020-18633-z2041-1723https://doaj.org/article/8e37d57515834f55b45498858d31ca322020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18633-zhttps://doaj.org/toc/2041-1723Slug supports heart development and tumor metastasis, but its role in blood vessel formation is less clear. Here the authors show that endothelial cell-expressed Slug regulates both physiologic and pathological angiogenesis, at least in part through the modulation of Notch signalling.Nan W. HultgrenJennifer S. FangMary E. ZieglerRicardo N. RamirezDuc T. T. PhanMichaela M. S. HatchKatrina M. Welch-ReardonAntonio E. PaniaguaLin S. KimNathan N. ShonDavid S. WilliamsAli MortazaviChristopher C. W. HughesNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nan W. Hultgren
Jennifer S. Fang
Mary E. Ziegler
Ricardo N. Ramirez
Duc T. T. Phan
Michaela M. S. Hatch
Katrina M. Welch-Reardon
Antonio E. Paniagua
Lin S. Kim
Nathan N. Shon
David S. Williams
Ali Mortazavi
Christopher C. W. Hughes
Slug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis
description Slug supports heart development and tumor metastasis, but its role in blood vessel formation is less clear. Here the authors show that endothelial cell-expressed Slug regulates both physiologic and pathological angiogenesis, at least in part through the modulation of Notch signalling.
format article
author Nan W. Hultgren
Jennifer S. Fang
Mary E. Ziegler
Ricardo N. Ramirez
Duc T. T. Phan
Michaela M. S. Hatch
Katrina M. Welch-Reardon
Antonio E. Paniagua
Lin S. Kim
Nathan N. Shon
David S. Williams
Ali Mortazavi
Christopher C. W. Hughes
author_facet Nan W. Hultgren
Jennifer S. Fang
Mary E. Ziegler
Ricardo N. Ramirez
Duc T. T. Phan
Michaela M. S. Hatch
Katrina M. Welch-Reardon
Antonio E. Paniagua
Lin S. Kim
Nathan N. Shon
David S. Williams
Ali Mortazavi
Christopher C. W. Hughes
author_sort Nan W. Hultgren
title Slug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis
title_short Slug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis
title_full Slug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis
title_fullStr Slug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis
title_full_unstemmed Slug regulates the Dll4-Notch-VEGFR2 axis to control endothelial cell activation and angiogenesis
title_sort slug regulates the dll4-notch-vegfr2 axis to control endothelial cell activation and angiogenesis
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/8e37d57515834f55b45498858d31ca32
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