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Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature

Maintenance of vascular integrity is required for embryogenesis and organ homeostasis. However, the gene expression programs that stabilize blood vessels are poorly understood. Here, we show that the histone methyltransferase Ezh2 maintains integrity of the developing vasculature by repressing a tra...

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Autores principales: Delgado-Olguín, Paul, Dang, Lan T., He, Daniel, Thomas, Sean, Chi, Lijun, Sukonnik, Tatyana, Khyzha, Nadiya, Dobenecker, Marc-Werner, Fish, Jason E., Bruneau, Benoit G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4302930/
https://www.ncbi.nlm.nih.gov/pubmed/25359725
http://dx.doi.org/10.1242/dev.112607
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author Delgado-Olguín, Paul
Dang, Lan T.
He, Daniel
Thomas, Sean
Chi, Lijun
Sukonnik, Tatyana
Khyzha, Nadiya
Dobenecker, Marc-Werner
Fish, Jason E.
Bruneau, Benoit G.
author_facet Delgado-Olguín, Paul
Dang, Lan T.
He, Daniel
Thomas, Sean
Chi, Lijun
Sukonnik, Tatyana
Khyzha, Nadiya
Dobenecker, Marc-Werner
Fish, Jason E.
Bruneau, Benoit G.
author_sort Delgado-Olguín, Paul
collection PubMed
description Maintenance of vascular integrity is required for embryogenesis and organ homeostasis. However, the gene expression programs that stabilize blood vessels are poorly understood. Here, we show that the histone methyltransferase Ezh2 maintains integrity of the developing vasculature by repressing a transcriptional program that activates expression of Mmp9. Inactivation of Ezh2 in developing mouse endothelium caused embryonic lethality with compromised vascular integrity and increased extracellular matrix degradation. Genome-wide approaches showed that Ezh2 targets Mmp9 and its activators Fosl1 and Klf5. In addition, we uncovered Creb3l1 as an Ezh2 target that directly activates Mmp9 gene expression in the endothelium. Furthermore, genetic inactivation of Mmp9 rescued vascular integrity defects in Ezh2-deficient embryos. Thus, epigenetic repression of Creb3l1, Fosl1, Klf5 and Mmp9 by Ezh2 in endothelial cells maintains the integrity of the developing vasculature, potentially linking this transcriptional network to diseases with compromised vascular integrity.
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spelling pubmed-43029302015-01-29 Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature Delgado-Olguín, Paul Dang, Lan T. He, Daniel Thomas, Sean Chi, Lijun Sukonnik, Tatyana Khyzha, Nadiya Dobenecker, Marc-Werner Fish, Jason E. Bruneau, Benoit G. Development Research Articles Maintenance of vascular integrity is required for embryogenesis and organ homeostasis. However, the gene expression programs that stabilize blood vessels are poorly understood. Here, we show that the histone methyltransferase Ezh2 maintains integrity of the developing vasculature by repressing a transcriptional program that activates expression of Mmp9. Inactivation of Ezh2 in developing mouse endothelium caused embryonic lethality with compromised vascular integrity and increased extracellular matrix degradation. Genome-wide approaches showed that Ezh2 targets Mmp9 and its activators Fosl1 and Klf5. In addition, we uncovered Creb3l1 as an Ezh2 target that directly activates Mmp9 gene expression in the endothelium. Furthermore, genetic inactivation of Mmp9 rescued vascular integrity defects in Ezh2-deficient embryos. Thus, epigenetic repression of Creb3l1, Fosl1, Klf5 and Mmp9 by Ezh2 in endothelial cells maintains the integrity of the developing vasculature, potentially linking this transcriptional network to diseases with compromised vascular integrity. The Company of Biologists 2014-12 /pmc/articles/PMC4302930/ /pubmed/25359725 http://dx.doi.org/10.1242/dev.112607 Text en © 2014. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Articles
Delgado-Olguín, Paul
Dang, Lan T.
He, Daniel
Thomas, Sean
Chi, Lijun
Sukonnik, Tatyana
Khyzha, Nadiya
Dobenecker, Marc-Werner
Fish, Jason E.
Bruneau, Benoit G.
Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature
title Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature
title_full Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature
title_fullStr Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature
title_full_unstemmed Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature
title_short Ezh2-mediated repression of a transcriptional pathway upstream of Mmp9 maintains integrity of the developing vasculature
title_sort ezh2-mediated repression of a transcriptional pathway upstream of mmp9 maintains integrity of the developing vasculature
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4302930/
https://www.ncbi.nlm.nih.gov/pubmed/25359725
http://dx.doi.org/10.1242/dev.112607
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