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Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression

Tissue angiogenesis is intimately regulated during embryogenesis and postnatal development. Defected angiogenesis contributes to aberrant development and is the main complication associated with ischemia-related diseases. We previously identified the increased expression of RUNX1T1 in umbilical cord...

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Autores principales: Liao, Ko-Hsun, Chang, Shing-Jyh, Chang, Hsin-Chuan, Chien, Chen-Li, Huang, Tse-Shun, Feng, Te-Chia, Lin, Wen-Wei, Shih, Chuan-Chi, Yang, Muh-Hwa, Yang, Shung-Haur, Lin, Chi-Hung, Hwang, Wei-Lun, Lee, Oscar K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5481149/
https://www.ncbi.nlm.nih.gov/pubmed/28640846
http://dx.doi.org/10.1371/journal.pone.0179758
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author Liao, Ko-Hsun
Chang, Shing-Jyh
Chang, Hsin-Chuan
Chien, Chen-Li
Huang, Tse-Shun
Feng, Te-Chia
Lin, Wen-Wei
Shih, Chuan-Chi
Yang, Muh-Hwa
Yang, Shung-Haur
Lin, Chi-Hung
Hwang, Wei-Lun
Lee, Oscar K.
author_facet Liao, Ko-Hsun
Chang, Shing-Jyh
Chang, Hsin-Chuan
Chien, Chen-Li
Huang, Tse-Shun
Feng, Te-Chia
Lin, Wen-Wei
Shih, Chuan-Chi
Yang, Muh-Hwa
Yang, Shung-Haur
Lin, Chi-Hung
Hwang, Wei-Lun
Lee, Oscar K.
author_sort Liao, Ko-Hsun
collection PubMed
description Tissue angiogenesis is intimately regulated during embryogenesis and postnatal development. Defected angiogenesis contributes to aberrant development and is the main complication associated with ischemia-related diseases. We previously identified the increased expression of RUNX1T1 in umbilical cord blood-derived endothelial colony-forming cells (ECFCs) by gene expression microarray. However, the biological relevance of RUNX1T1 in endothelial lineage is not defined clearly. Here, we demonstrate RUNX1T1 regulates the survival, motility and tube forming capability of ECFCs and EA.hy926 endothelial cells by loss-and gain-of function assays, respectively. Second, embryonic vasculatures and quantity of bone marrow-derived angiogenic progenitors are found to be reduced in the established Runx1t1 heterozygous knockout mice. Finally, a central RUNX1T1-regulated signature is uncovered and VEGFA, BMP4 as well as TGF-β2 are demonstrated to mediate RUNX1T1-orchested angiogenic activities. Taken together, our results reveal that RUNX1T1 serves as a common angiogenic driver for vaculogenesis and functionality of endothelial lineage cells. Therefore, the discovery and application of pharmaceutical activators for RUNX1T1 will improve therapeutic efficacy toward ischemia by promoting neovascularization.
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spelling pubmed-54811492017-07-05 Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression Liao, Ko-Hsun Chang, Shing-Jyh Chang, Hsin-Chuan Chien, Chen-Li Huang, Tse-Shun Feng, Te-Chia Lin, Wen-Wei Shih, Chuan-Chi Yang, Muh-Hwa Yang, Shung-Haur Lin, Chi-Hung Hwang, Wei-Lun Lee, Oscar K. PLoS One Research Article Tissue angiogenesis is intimately regulated during embryogenesis and postnatal development. Defected angiogenesis contributes to aberrant development and is the main complication associated with ischemia-related diseases. We previously identified the increased expression of RUNX1T1 in umbilical cord blood-derived endothelial colony-forming cells (ECFCs) by gene expression microarray. However, the biological relevance of RUNX1T1 in endothelial lineage is not defined clearly. Here, we demonstrate RUNX1T1 regulates the survival, motility and tube forming capability of ECFCs and EA.hy926 endothelial cells by loss-and gain-of function assays, respectively. Second, embryonic vasculatures and quantity of bone marrow-derived angiogenic progenitors are found to be reduced in the established Runx1t1 heterozygous knockout mice. Finally, a central RUNX1T1-regulated signature is uncovered and VEGFA, BMP4 as well as TGF-β2 are demonstrated to mediate RUNX1T1-orchested angiogenic activities. Taken together, our results reveal that RUNX1T1 serves as a common angiogenic driver for vaculogenesis and functionality of endothelial lineage cells. Therefore, the discovery and application of pharmaceutical activators for RUNX1T1 will improve therapeutic efficacy toward ischemia by promoting neovascularization. Public Library of Science 2017-06-22 /pmc/articles/PMC5481149/ /pubmed/28640846 http://dx.doi.org/10.1371/journal.pone.0179758 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Liao, Ko-Hsun
Chang, Shing-Jyh
Chang, Hsin-Chuan
Chien, Chen-Li
Huang, Tse-Shun
Feng, Te-Chia
Lin, Wen-Wei
Shih, Chuan-Chi
Yang, Muh-Hwa
Yang, Shung-Haur
Lin, Chi-Hung
Hwang, Wei-Lun
Lee, Oscar K.
Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression
title Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression
title_full Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression
title_fullStr Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression
title_full_unstemmed Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression
title_short Endothelial angiogenesis is directed by RUNX1T1-regulated VEGFA, BMP4 and TGF-β2 expression
title_sort endothelial angiogenesis is directed by runx1t1-regulated vegfa, bmp4 and tgf-β2 expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5481149/
https://www.ncbi.nlm.nih.gov/pubmed/28640846
http://dx.doi.org/10.1371/journal.pone.0179758
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