MicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation

G protein-coupled receptors APLNR and CXCR4 are crucial for vascular development. Here, the authors show that these two signaling pathways communicate and that in response to blood flow APLNR signaling induces a decrease in CXCR4 expression via miR-139-5p, thereby restricting CXCR4 expression to the...

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Autores principales: Irinna Papangeli, Jongmin Kim, Inna Maier, Saejeong Park, Aram Lee, Yujung Kang, Keiichiro Tanaka, Omar F. Khan, Hyekyung Ju, Yoko Kojima, Kristy Red-Horse, Daniel G. Anderson, Arndt F. Siekmann, Hyung J. Chun
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/f8d99b3209af438b97ff65e526d3b632
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spelling oai:doaj.org-article:f8d99b3209af438b97ff65e526d3b6322021-12-02T14:39:15ZMicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation10.1038/ncomms112682041-1723https://doaj.org/article/f8d99b3209af438b97ff65e526d3b6322016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11268https://doaj.org/toc/2041-1723G protein-coupled receptors APLNR and CXCR4 are crucial for vascular development. Here, the authors show that these two signaling pathways communicate and that in response to blood flow APLNR signaling induces a decrease in CXCR4 expression via miR-139-5p, thereby restricting CXCR4 expression to the non-flow exposed tip cells in the retinal vasculature.Irinna PapangeliJongmin KimInna MaierSaejeong ParkAram LeeYujung KangKeiichiro TanakaOmar F. KhanHyekyung JuYoko KojimaKristy Red-HorseDaniel G. AndersonArndt F. SiekmannHyung J. ChunNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Irinna Papangeli
Jongmin Kim
Inna Maier
Saejeong Park
Aram Lee
Yujung Kang
Keiichiro Tanaka
Omar F. Khan
Hyekyung Ju
Yoko Kojima
Kristy Red-Horse
Daniel G. Anderson
Arndt F. Siekmann
Hyung J. Chun
MicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation
description G protein-coupled receptors APLNR and CXCR4 are crucial for vascular development. Here, the authors show that these two signaling pathways communicate and that in response to blood flow APLNR signaling induces a decrease in CXCR4 expression via miR-139-5p, thereby restricting CXCR4 expression to the non-flow exposed tip cells in the retinal vasculature.
format article
author Irinna Papangeli
Jongmin Kim
Inna Maier
Saejeong Park
Aram Lee
Yujung Kang
Keiichiro Tanaka
Omar F. Khan
Hyekyung Ju
Yoko Kojima
Kristy Red-Horse
Daniel G. Anderson
Arndt F. Siekmann
Hyung J. Chun
author_facet Irinna Papangeli
Jongmin Kim
Inna Maier
Saejeong Park
Aram Lee
Yujung Kang
Keiichiro Tanaka
Omar F. Khan
Hyekyung Ju
Yoko Kojima
Kristy Red-Horse
Daniel G. Anderson
Arndt F. Siekmann
Hyung J. Chun
author_sort Irinna Papangeli
title MicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation
title_short MicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation
title_full MicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation
title_fullStr MicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation
title_full_unstemmed MicroRNA 139-5p coordinates APLNR-CXCR4 crosstalk during vascular maturation
title_sort microrna 139-5p coordinates aplnr-cxcr4 crosstalk during vascular maturation
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/f8d99b3209af438b97ff65e526d3b632
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