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HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification

In eutherian mammals, embryonic growth and survival is dependent on the formation of the placenta, an organ that facilitates the efficient exchange of oxygen, nutrients, and metabolic waste between the maternal and fetal blood supplies. Key to the placenta's function is the formation of its vas...

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Autores principales: Shaut, Carley A. E., Keene, Douglas R., Sorensen, Lise K., Li, Dean Y., Stadler, H. Scott
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2367452/
https://www.ncbi.nlm.nih.gov/pubmed/18483557
http://dx.doi.org/10.1371/journal.pgen.1000073
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author Shaut, Carley A. E.
Keene, Douglas R.
Sorensen, Lise K.
Li, Dean Y.
Stadler, H. Scott
author_facet Shaut, Carley A. E.
Keene, Douglas R.
Sorensen, Lise K.
Li, Dean Y.
Stadler, H. Scott
author_sort Shaut, Carley A. E.
collection PubMed
description In eutherian mammals, embryonic growth and survival is dependent on the formation of the placenta, an organ that facilitates the efficient exchange of oxygen, nutrients, and metabolic waste between the maternal and fetal blood supplies. Key to the placenta's function is the formation of its vascular labyrinth, a series of finely branched vessels whose molecular ontogeny remains largely undefined. In this report, we demonstrate that HOXA13 plays an essential role in labyrinth vessel formation. In the absence of HOXA13 function, placental endothelial cell morphology is altered, causing a loss in vessel wall integrity, edema of the embryonic blood vessels, and mid-gestational lethality. Microarray analysis of wild-type and mutant placentas revealed significant changes in endothelial gene expression profiles. Notably, pro-vascular genes, including Tie2 and Foxf1, exhibited reduced expression in the mutant endothelia, which also exhibited elevated expression of genes normally expressed in lymphatic or sinusoidal endothelia. ChIP analysis of HOXA13–DNA complexes in the placenta confirmed that HOXA13 binds the Tie2 and Foxf1 promoters in vivo. In vitro, HOXA13 binds sequences present in the Tie2 and Foxf1 promoters with high affinity (K(d) = 27–42 nM) and HOXA13 can use these bound promoter regions to direct gene expression. Taken together, these findings demonstrate that HOXA13 directly regulates Tie2 and Foxf1 in the placental labyrinth endothelia, providing a functional explanation for the mid-gestational lethality exhibited by Hoxa13 mutant embryos as well as a novel transcriptional program necessary for the specification of the labyrinth vascular endothelia.
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spelling pubmed-23674522008-05-16 HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification Shaut, Carley A. E. Keene, Douglas R. Sorensen, Lise K. Li, Dean Y. Stadler, H. Scott PLoS Genet Research Article In eutherian mammals, embryonic growth and survival is dependent on the formation of the placenta, an organ that facilitates the efficient exchange of oxygen, nutrients, and metabolic waste between the maternal and fetal blood supplies. Key to the placenta's function is the formation of its vascular labyrinth, a series of finely branched vessels whose molecular ontogeny remains largely undefined. In this report, we demonstrate that HOXA13 plays an essential role in labyrinth vessel formation. In the absence of HOXA13 function, placental endothelial cell morphology is altered, causing a loss in vessel wall integrity, edema of the embryonic blood vessels, and mid-gestational lethality. Microarray analysis of wild-type and mutant placentas revealed significant changes in endothelial gene expression profiles. Notably, pro-vascular genes, including Tie2 and Foxf1, exhibited reduced expression in the mutant endothelia, which also exhibited elevated expression of genes normally expressed in lymphatic or sinusoidal endothelia. ChIP analysis of HOXA13–DNA complexes in the placenta confirmed that HOXA13 binds the Tie2 and Foxf1 promoters in vivo. In vitro, HOXA13 binds sequences present in the Tie2 and Foxf1 promoters with high affinity (K(d) = 27–42 nM) and HOXA13 can use these bound promoter regions to direct gene expression. Taken together, these findings demonstrate that HOXA13 directly regulates Tie2 and Foxf1 in the placental labyrinth endothelia, providing a functional explanation for the mid-gestational lethality exhibited by Hoxa13 mutant embryos as well as a novel transcriptional program necessary for the specification of the labyrinth vascular endothelia. Public Library of Science 2008-05-16 /pmc/articles/PMC2367452/ /pubmed/18483557 http://dx.doi.org/10.1371/journal.pgen.1000073 Text en Shaut 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
Shaut, Carley A. E.
Keene, Douglas R.
Sorensen, Lise K.
Li, Dean Y.
Stadler, H. Scott
HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification
title HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification
title_full HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification
title_fullStr HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification
title_full_unstemmed HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification
title_short HOXA13 Is Essential for Placental Vascular Patterning and Labyrinth Endothelial Specification
title_sort hoxa13 is essential for placental vascular patterning and labyrinth endothelial specification
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2367452/
https://www.ncbi.nlm.nih.gov/pubmed/18483557
http://dx.doi.org/10.1371/journal.pgen.1000073
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