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Smad5 determines murine amnion fate through the control of bone morphogenetic protein expression and signalling levels.

机译:Smad5通过控制骨形态发生蛋白表达和信号传导水平来确定鼠羊膜的命运。

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摘要

Smad5 is an intracellular mediator of bone morphogenetic protein (Bmp) signalling. It is essential for primordial germ cell (PGC) development, for the development of the allantois and for amnion closure, as demonstrated by loss of Bmp signalling. By contrast, the appearance of ectopic PGC-like cells and regionalized ectopic vasculogenesis and haematopoiesis in thickened Smad5(m1/m1) amnion are amnion defects that have not been associated with loss of Bmp signalling components. We show that defects in amnion and allantois can already be detected at embryonic day (E) 7.5 in Smad5 mutant mice. However, ectopic Oct4-positive (Oct4(+)) and alkaline phosphatase-positive (AP(+)) cells appear suddenly in thickened amnion at E8.5, and at a remote distance from the allantois and posterior primitive streak, suggesting a change of fate in situ. These ectopic Oct4(+), AP(+) cells appear to be Stella negative and hence cannot be called bona fide PGCs. We demonstrate a robust upregulation of Bmp2 and Bmp4 expression,as well as of Erk and Smad activity, in the Smad5 mutant amnion. The ectopic expression of several Bmp target genes in different domains and the regionalized presence of cells of several Bmp-sensitive lineages in the mutant amnion suggest that different levels of Bmp signalling may determine cell fate. Injection of rBMP4 in the exocoelom of wild-type embryos can induce thickening of amnion, mimicking the early amnion phenotype in Smad5 mutants. These results support a model in which loss of Smad5 results paradoxically in gain of Bmp function defects in the amnion.
机译:Smad5是骨形态发生蛋白(Bmp)信号传导的细胞内介体。这对原始生殖细胞(PGC)的发展,尿囊的发展和羊膜的关闭至关重要,这是Bmp信号缺失所证明的。相比之下,增厚的Smad5(m1 / m1)羊膜中异位PGC样细胞的出现以及局部性异位血管生成和造血作用是与Bmp信号传导成分丢失无关的羊膜缺陷。我们显示,羊膜和尿囊中的缺陷已经可以在Smad5突变小鼠的胚胎天(E)7.5处检测到。但是,异位的Oct4阳性(Oct4(+))和碱性磷酸酶阳性(AP(+))细胞突然出现在E8.5增厚的羊膜中,并且与尿囊和后原始条带相距很远,表明发生了变化原地的命运。这些异位Oct4(+),AP(+)细胞似乎是Stella阴性的,因此不能称为真正的PGC。我们证明了在Smad5突变体羊膜中Bmp2和Bmp4表达以及Erk和Smad活性的强大上调。几个Bmp靶基因在不同域中的异位表达以及突变羊膜中多个Bmp敏感谱系细胞的区域性存在表明,不同水平的Bmp信号传导可能决定细胞命运。在野生型胚胎的外皮中注射rBMP4可以诱导羊膜增厚,模仿Smad5突变体的早期羊膜表型。这些结果支持了一个模型,其中Smad5的缺失反常导致羊膜中Bmp功能缺陷的获得。

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