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刺猬因子对小鼠血管生成的诱导作用由Foxf1和Bmp4介导。

Hedgehog induction of murine vasculogenesis is mediated by Foxf1 and Bmp4.

作者信息

Astorga Jeanette, Carlsson Peter

机构信息

Department of Cell and Molecular Biology, Göteborg University, Box 462, SE-405 30 Göteborg, Sweden.

出版信息

Development. 2007 Oct;134(20):3753-61. doi: 10.1242/dev.004432. Epub 2007 Sep 19.

Abstract

The first vasculature of the developing vertebrate embryo forms by assembly of endothelial cells into simple tubes from clusters of mesodermal angioblasts. Maturation of this vasculature involves remodeling, pruning and investment with mural cells. Hedgehog proteins are part of the instructive endodermal signal that triggers the assembly of the first primitive vessels in the mesoderm. We used a combination of genetic and in vitro culture methods to investigate the role of hedgehogs and their targets in murine extraembryonic vasculogenesis. We show that Bmps, in particular Bmp4, are crucial for vascular tube formation, that Bmp4 expression in extraembryonic tissues requires the forkhead transcription factor Foxf1 and that the role of hedgehog proteins in this process is to activate Foxf1 expression in the mesoderm. We show in the allantois that genetic disruption of hedgehog signaling (Smo(-/-)) has no effect on Foxf1 expression, and neither Bmp4 expression nor vasculogenesis are disturbed. By contrast, targeted inactivation of Foxf1 leads to loss of allantoic Bmp4 and vasculature. In vitro, the avascular Foxf1(-/-) phenotype can be rescued by exogenous Bmp4, and vasculogenesis in wild-type tissue can be blocked by the Bmp antagonist noggin. Hedgehogs are required for activation of Foxf1, Bmp4 expression and vasculogenesis in the yolk sac. However, vasculogenesis in Smo(-/-) yolk sacs can be rescued by exogenous Bmp4, consistent with the notion that the role of hedgehog signaling in primary vascular tube formation is as an activator of Bmp4, via Foxf1.

摘要

发育中的脊椎动物胚胎的首个脉管系统是由内皮细胞从中胚层成血管细胞簇组装成简单的管而形成的。该脉管系统的成熟涉及重塑、修剪以及壁细胞的包裹。刺猬蛋白是诱导性内胚层信号的一部分,该信号触发中胚层中首个原始血管的组装。我们使用遗传和体外培养方法相结合的方式来研究刺猬蛋白及其靶点在小鼠胚外血管生成中的作用。我们发现,骨形态发生蛋白(Bmps),特别是Bmp4,对于血管管形成至关重要,胚外组织中Bmp4的表达需要叉头转录因子Foxf1,并且刺猬蛋白在此过程中的作用是激活中胚层中Foxf1的表达。我们在尿囊中发现,刺猬信号通路的基因破坏(Smo(-/-))对Foxf1表达没有影响,Bmp4表达和血管生成也未受到干扰。相比之下,Foxf1的靶向失活导致尿囊Bmp4和脉管系统缺失。在体外,无血管的Foxf1(-/-)表型可通过外源性Bmp4挽救,野生型组织中的血管生成可被Bmp拮抗剂头蛋白阻断。刺猬蛋白是卵黄囊中Foxf1激活、Bmp4表达和血管生成所必需的。然而,Smo(-/-)卵黄囊中的血管生成可通过外源性Bmp4挽救,这与刺猬信号通路在初级血管管形成中的作用是通过Foxf1激活Bmp4这一观点一致。

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