Notch2 and Notch3 function together to regulate vascular smooth muscle development.

Notch signaling has been implicated in the regulation of smooth muscle differentiation, but the precise role of Notch receptors is ill defined. Although Notch3 receptor expression is high in smooth muscle, Notch3 mutant mice are viable and display only mild defects in vascular patterning and smooth...

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Main Authors: Qingqing Wang, Ning Zhao, Simone Kennard, Brenda Lilly
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3355134?pdf=render
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spelling doaj-1f580f499ec44418af718574529812c62020-11-25T02:29:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0175e3736510.1371/journal.pone.0037365Notch2 and Notch3 function together to regulate vascular smooth muscle development.Qingqing WangNing ZhaoSimone KennardBrenda LillyNotch signaling has been implicated in the regulation of smooth muscle differentiation, but the precise role of Notch receptors is ill defined. Although Notch3 receptor expression is high in smooth muscle, Notch3 mutant mice are viable and display only mild defects in vascular patterning and smooth muscle differentiation. Notch2 is also expressed in smooth muscle and Notch2 mutant mice show cardiovascular abnormalities indicative of smooth muscle defects. Together, these findings infer that Notch2 and Notch3 act together to govern vascular development and smooth muscle differentiation. To address this hypothesis, we characterized the phenotype of mice with a combined deficiency in Notch2 and Notch3. Our results show that when Notch2 and Notch3 genes are simultaneously disrupted, mice die in utero at mid-gestation due to severe vascular abnormalities. Assembly of the vascular network occurs normally as assessed by Pecam1 expression, however smooth muscle cells surrounding the vessels are grossly deficient leading to vascular collapse. In vitro analysis show that both Notch2 and Notch3 robustly activate smooth muscle differentiation genes, and Notch3, but not Notch2 is a target of Notch signaling. These data highlight the combined actions of the Notch receptors in the regulation of vascular development, and suggest that while these receptors exhibit compensatory roles in smooth muscle, their functions are not entirely overlapping.http://europepmc.org/articles/PMC3355134?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Qingqing Wang
Ning Zhao
Simone Kennard
Brenda Lilly
spellingShingle Qingqing Wang
Ning Zhao
Simone Kennard
Brenda Lilly
Notch2 and Notch3 function together to regulate vascular smooth muscle development.
PLoS ONE
author_facet Qingqing Wang
Ning Zhao
Simone Kennard
Brenda Lilly
author_sort Qingqing Wang
title Notch2 and Notch3 function together to regulate vascular smooth muscle development.
title_short Notch2 and Notch3 function together to regulate vascular smooth muscle development.
title_full Notch2 and Notch3 function together to regulate vascular smooth muscle development.
title_fullStr Notch2 and Notch3 function together to regulate vascular smooth muscle development.
title_full_unstemmed Notch2 and Notch3 function together to regulate vascular smooth muscle development.
title_sort notch2 and notch3 function together to regulate vascular smooth muscle development.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Notch signaling has been implicated in the regulation of smooth muscle differentiation, but the precise role of Notch receptors is ill defined. Although Notch3 receptor expression is high in smooth muscle, Notch3 mutant mice are viable and display only mild defects in vascular patterning and smooth muscle differentiation. Notch2 is also expressed in smooth muscle and Notch2 mutant mice show cardiovascular abnormalities indicative of smooth muscle defects. Together, these findings infer that Notch2 and Notch3 act together to govern vascular development and smooth muscle differentiation. To address this hypothesis, we characterized the phenotype of mice with a combined deficiency in Notch2 and Notch3. Our results show that when Notch2 and Notch3 genes are simultaneously disrupted, mice die in utero at mid-gestation due to severe vascular abnormalities. Assembly of the vascular network occurs normally as assessed by Pecam1 expression, however smooth muscle cells surrounding the vessels are grossly deficient leading to vascular collapse. In vitro analysis show that both Notch2 and Notch3 robustly activate smooth muscle differentiation genes, and Notch3, but not Notch2 is a target of Notch signaling. These data highlight the combined actions of the Notch receptors in the regulation of vascular development, and suggest that while these receptors exhibit compensatory roles in smooth muscle, their functions are not entirely overlapping.
url http://europepmc.org/articles/PMC3355134?pdf=render
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