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The forkhead transcription factors, Foxc1 and Foxc2, are required for arterial specification and lymphatic sprouting during vascular development

机译:前叉转录因子Foxc1和Foxc2是血管发育过程中动脉规格和淋巴发芽所必需的

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Accumulating evidence suggests that in the vertebrate embryo, acquisition of arterial and venous identity is established early by genetic mechanisms, including those regulated by vascular endothelial growth factor (VEGF) and Notch signaling. However, although the COUP-TFII nuclear receptor has recently been shown to regulate vein identity, very little is known about the molecular mechanisms of transcriptional regulation in arterial specification. Here, we show that mouse embryos compound mutant for Foxc1 and Foxc2, two closely related Fox transcription factors, exhibit arteriovenous malformations and lack of induction of arterial markers whereas venous markers such as COUP-TFII are normally expressed, suggesting that mutant endothelial cells fail to acquire an arterial fate. Notably, consistent with this observation, overexpression of Foxc genes in vitro induces expression of arterial markers such as NotchI and its ligand Delta-like 4 (Dll4), and Foxcl and Foxc2 directly activate the Dll4 promoter via a Foxc-binding site. Moreover, compound Foxc mutants show a defect in sprouting of lymphatic endothelial cells from veins in early lymphatic development, due to reduced expression of VEGF-C. Taken together, our results demonstrate that Foxc transcription factors are novel regulators of arterial cell specification upstream of Notch signaling and lymphatic sprouting during embryonic development. (c) 2006 Elsevier Inc. All rights reserved.
机译:越来越多的证据表明,在脊椎动物胚胎中,动脉和静脉身份的获取是通过遗传机制尽早建立的,包括受血管内皮生长因子(VEGF)和Notch信号传导调控的遗传机制。然而,尽管最近已显示COUP-TFII核受体可调节静脉身份,但对动脉规范中转录调节的分子机制了解甚少。在这里,我们表明小鼠胚胎复合突变的Foxc1和Foxc2,两个密切相关的Fox转录因子,表现出动静脉畸形和缺乏动脉标记的诱导,而静脉标记如COUP-TFII正常表达,表明突变的内皮细胞不能获得动脉命运。值得注意的是,与该观察结果一致,Foxc基因在体外的过度表达诱导了动脉标记物的表达,例如NotchI及其配体Delta-like 4(Dll4),Foxc1和Foxc2通过Foxc结合位点直接激活了Dll4启动子。此外,由于VEGF-C的表达降低,复合Foxc突变体在早期淋巴发育中显示出从静脉发芽的淋巴内皮细胞缺陷。两者合计,我们的结果表明Foxc转录因子是Notch信号和胚胎发育过程中淋巴发芽上游的动脉细胞规格的新型调节剂。 (c)2006 Elsevier Inc.保留所有权利。

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