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Notch2 and Notch3 Function Together to Regulate Vascular Smooth Muscle Development

机译:Notch2和Notch3共同调节血管平滑肌的发育

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摘要

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.
机译:Notch信号传导与平滑肌分化的调节有关,但Notch受体的确切作用尚不清楚。尽管Notch3受体在平滑肌中的表达较高,但Notch3突变小鼠是可行的,并且在血管形成和平滑肌分化中仅表现出轻微的缺陷。 Notch2在平滑肌中也有表达,Notch2突变小鼠显示出心血管异常,表明平滑肌缺损。这些发现共同推断出Notch2和Notch3共同发挥作用来控制血管发育和平滑肌分化。为了解决这个假设,我们表征了Notch2和Notch3联合缺乏的小鼠的表型。我们的结果表明,当同时破坏Notch2和Notch3基因时,由于严重的血管异常,小鼠在妊娠中期死于子宫内。血管网络的组装通常通过Pecam1表达进行评估,但是血管周围的平滑肌细胞严重不足,导致血管萎缩。体外分析表明,Notch2和Notch3均能强烈激活平滑肌分化基因,Notch3(而非Notch2)是Notch信号转导的靶标。这些数据突出了Notch受体在调节血管发育中的综合作用,并表明尽管这些受体在平滑肌中发挥补偿作用,但它们的功能并不完全重叠。

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