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EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia

Epigenetic mechanisms may regulate the expression of pro-angiogenic genes, thus affecting reparative angiogenesis in ischemic limbs. The enhancer of zest homolog-2 (EZH2) induces thtrimethylation of lysine 27 on histone H3 (H3K27me3), which represses gene transcription. We explored (i) if EZH2 expre...

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Autores principales: Mitić, Tijana, Caporali, Andrea, Floris, Ilaria, Meloni, Marco, Marchetti, Micol, Urrutia, Raul, Angelini, Gianni D, Emanueli, Costanza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4426795/
https://www.ncbi.nlm.nih.gov/pubmed/25189741
http://dx.doi.org/10.1038/mt.2014.163
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author Mitić, Tijana
Caporali, Andrea
Floris, Ilaria
Meloni, Marco
Marchetti, Micol
Urrutia, Raul
Angelini, Gianni D
Emanueli, Costanza
author_facet Mitić, Tijana
Caporali, Andrea
Floris, Ilaria
Meloni, Marco
Marchetti, Micol
Urrutia, Raul
Angelini, Gianni D
Emanueli, Costanza
author_sort Mitić, Tijana
collection PubMed
description Epigenetic mechanisms may regulate the expression of pro-angiogenic genes, thus affecting reparative angiogenesis in ischemic limbs. The enhancer of zest homolog-2 (EZH2) induces thtrimethylation of lysine 27 on histone H3 (H3K27me3), which represses gene transcription. We explored (i) if EZH2 expression is regulated by hypoxia and ischemia; (ii) the impact of EZH2 on the expression of two pro-angiogenic genes: eNOS and BDNF; (iii) the functional effect of EZH2 inhibition on cultured endothelial cells (ECs); (iv) the therapeutic potential of EZH2 inhibition in a mouse model of limb ischemia (LI). EZH2 expression was increased in cultured ECs exposed to hypoxia (control: normoxia) and in ECs extracted from mouse ischemic limb muscles (control: absence of ischemia). EZH2 increased the H3K27me3 abundance onto regulatory regions of eNOS and BDNF promoters. In vitro RNA silencing or pharmacological inhibition by 3-deazaneplanocin (DZNep) of EZH2 increased eNOS and BDNF mRNA and protein levels and enhanced functional capacities (migration, angiogenesis) of ECs under either normoxia or hypoxia. In mice with experimentally induced LI, DZNep increased angiogenesis in ischaemic muscles, the circulating levels of pro-angiogenic hematopoietic cells and blood flow recovery. Targeting EZH2 for inhibition may open new therapeutic avenues for patients with limb ischemia.
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spelling pubmed-44267952015-05-21 EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia Mitić, Tijana Caporali, Andrea Floris, Ilaria Meloni, Marco Marchetti, Micol Urrutia, Raul Angelini, Gianni D Emanueli, Costanza Mol Ther Original Article Epigenetic mechanisms may regulate the expression of pro-angiogenic genes, thus affecting reparative angiogenesis in ischemic limbs. The enhancer of zest homolog-2 (EZH2) induces thtrimethylation of lysine 27 on histone H3 (H3K27me3), which represses gene transcription. We explored (i) if EZH2 expression is regulated by hypoxia and ischemia; (ii) the impact of EZH2 on the expression of two pro-angiogenic genes: eNOS and BDNF; (iii) the functional effect of EZH2 inhibition on cultured endothelial cells (ECs); (iv) the therapeutic potential of EZH2 inhibition in a mouse model of limb ischemia (LI). EZH2 expression was increased in cultured ECs exposed to hypoxia (control: normoxia) and in ECs extracted from mouse ischemic limb muscles (control: absence of ischemia). EZH2 increased the H3K27me3 abundance onto regulatory regions of eNOS and BDNF promoters. In vitro RNA silencing or pharmacological inhibition by 3-deazaneplanocin (DZNep) of EZH2 increased eNOS and BDNF mRNA and protein levels and enhanced functional capacities (migration, angiogenesis) of ECs under either normoxia or hypoxia. In mice with experimentally induced LI, DZNep increased angiogenesis in ischaemic muscles, the circulating levels of pro-angiogenic hematopoietic cells and blood flow recovery. Targeting EZH2 for inhibition may open new therapeutic avenues for patients with limb ischemia. Nature Publishing Group 2015-01 2014-10-07 /pmc/articles/PMC4426795/ /pubmed/25189741 http://dx.doi.org/10.1038/mt.2014.163 Text en Copyright © 2015 American Society of Gene & Cell Therapy http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Mitić, Tijana
Caporali, Andrea
Floris, Ilaria
Meloni, Marco
Marchetti, Micol
Urrutia, Raul
Angelini, Gianni D
Emanueli, Costanza
EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia
title EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia
title_full EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia
title_fullStr EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia
title_full_unstemmed EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia
title_short EZH2 Modulates Angiogenesis In Vitro and in a Mouse Model of Limb Ischemia
title_sort ezh2 modulates angiogenesis in vitro and in a mouse model of limb ischemia
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4426795/
https://www.ncbi.nlm.nih.gov/pubmed/25189741
http://dx.doi.org/10.1038/mt.2014.163
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