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Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis

Angiogenesis is a complex process orchestrated by both growth factors and cell adhesion and is initiated by focal degradation of the vascular basement membrane with subsequent migration and proliferation of endothelial cells. The Ras/Raf/MEK/ERK pathway is required for EC function during angiogenesi...

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Autores principales: Srinivasan, Ruchika, Zabuawala, Tahera, Huang, Hong, Zhang, Jianying, Gulati, Parul, Fernandez, Soledad, Karlo, J. Colleen, Landreth, Gary E., Leone, Gustavo, Ostrowski, Michael C.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2789384/
https://www.ncbi.nlm.nih.gov/pubmed/20011539
http://dx.doi.org/10.1371/journal.pone.0008283
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author Srinivasan, Ruchika
Zabuawala, Tahera
Huang, Hong
Zhang, Jianying
Gulati, Parul
Fernandez, Soledad
Karlo, J. Colleen
Landreth, Gary E.
Leone, Gustavo
Ostrowski, Michael C.
author_facet Srinivasan, Ruchika
Zabuawala, Tahera
Huang, Hong
Zhang, Jianying
Gulati, Parul
Fernandez, Soledad
Karlo, J. Colleen
Landreth, Gary E.
Leone, Gustavo
Ostrowski, Michael C.
author_sort Srinivasan, Ruchika
collection PubMed
description Angiogenesis is a complex process orchestrated by both growth factors and cell adhesion and is initiated by focal degradation of the vascular basement membrane with subsequent migration and proliferation of endothelial cells. The Ras/Raf/MEK/ERK pathway is required for EC function during angiogenesis. Although in vitro studies implicate ERK1 and ERK2 in endothelial cell survival, their precise role in angiogenesis in vivo remains poorly defined. Cre/loxP technology was used to inactivate Erk1 and Erk2 in endothelial cells during murine development, resulting in embryonic lethality due to severely reduced angiogenesis. Deletion of Erk1 and Erk2 in primary endothelial cells resulted in decreased cell proliferation and migration, but not in increased apoptosis. Expression of key cell cycle regulators was diminished in the double knockout cells, and decreased DNA synthesis could be observed in endothelial cells during embryogenesis. Interestingly, both Paxillin and Focal Adhesion Kinase were expressed at lower levels in endothelial cells lacking Erk1 and Erk2 both in vivo and in vitro, leading to defects in the organization of the cytoskeleton and in cell motility. The regulation of Paxillin and Focal Adhesion Kinase expression occurred post-transcriptionally. These results demonstrate that ERK1 and ERK2 coordinate endothelial cell proliferation and migration during angiogenesis.
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spelling pubmed-27893842009-12-14 Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis Srinivasan, Ruchika Zabuawala, Tahera Huang, Hong Zhang, Jianying Gulati, Parul Fernandez, Soledad Karlo, J. Colleen Landreth, Gary E. Leone, Gustavo Ostrowski, Michael C. PLoS One Research Article Angiogenesis is a complex process orchestrated by both growth factors and cell adhesion and is initiated by focal degradation of the vascular basement membrane with subsequent migration and proliferation of endothelial cells. The Ras/Raf/MEK/ERK pathway is required for EC function during angiogenesis. Although in vitro studies implicate ERK1 and ERK2 in endothelial cell survival, their precise role in angiogenesis in vivo remains poorly defined. Cre/loxP technology was used to inactivate Erk1 and Erk2 in endothelial cells during murine development, resulting in embryonic lethality due to severely reduced angiogenesis. Deletion of Erk1 and Erk2 in primary endothelial cells resulted in decreased cell proliferation and migration, but not in increased apoptosis. Expression of key cell cycle regulators was diminished in the double knockout cells, and decreased DNA synthesis could be observed in endothelial cells during embryogenesis. Interestingly, both Paxillin and Focal Adhesion Kinase were expressed at lower levels in endothelial cells lacking Erk1 and Erk2 both in vivo and in vitro, leading to defects in the organization of the cytoskeleton and in cell motility. The regulation of Paxillin and Focal Adhesion Kinase expression occurred post-transcriptionally. These results demonstrate that ERK1 and ERK2 coordinate endothelial cell proliferation and migration during angiogenesis. Public Library of Science 2009-12-14 /pmc/articles/PMC2789384/ /pubmed/20011539 http://dx.doi.org/10.1371/journal.pone.0008283 Text en Srinivasan et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Srinivasan, Ruchika
Zabuawala, Tahera
Huang, Hong
Zhang, Jianying
Gulati, Parul
Fernandez, Soledad
Karlo, J. Colleen
Landreth, Gary E.
Leone, Gustavo
Ostrowski, Michael C.
Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis
title Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis
title_full Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis
title_fullStr Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis
title_full_unstemmed Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis
title_short Erk1 and Erk2 Regulate Endothelial Cell Proliferation and Migration during Mouse Embryonic Angiogenesis
title_sort erk1 and erk2 regulate endothelial cell proliferation and migration during mouse embryonic angiogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2789384/
https://www.ncbi.nlm.nih.gov/pubmed/20011539
http://dx.doi.org/10.1371/journal.pone.0008283
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