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首页> 外文期刊>Development >Non-cell-autonomous role for Cripto in axial midline formation during vertebrate embryogenesis.
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Non-cell-autonomous role for Cripto in axial midline formation during vertebrate embryogenesis.

机译:Cripto在脊椎动物胚胎发生过程中在轴向中线形成中的非细胞自主作用。

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摘要

Several membrane-associated proteins are known to modulate the activity and range of potent morphogenetic signals during development. In particular, members of the EGF-CFC family encode glycosyl-phosphatidylinositol (GPI)-linked proteins that are essential for activity of the transforming growth factor beta (TGFbeta) ligand Nodal, a factor that plays a central role in establishing the vertebrate body plan. Genetic and biochemical studies have indicated that EGF-CFC proteins function as cell-autonomous co-receptors for Nodal; by contrast, cell culture data have suggested that the mammalian EGF-CFC protein Cripto can act as a secreted signaling factor. Here we show that Cripto acts non-cell-autonomously during axial mesendoderm formation in the mouse embryo and may possess intercellular signaling activity in vivo. Phenotypic analysis of hypomorphic mutants demonstrates that Cripto is essential for formation of the notochordal plate, prechordal mesoderm and foregut endoderm during gastrulation. Remarkably, Cripto null mutant cells readily contribute to these tissues in chimeras, indicating non-cell-autonomy. Consistent with these loss-of-function analyses, gain-of-function experiments in chick embryos show that exposure of node/head process mesoderm to soluble Cripto protein results in alterations in cell fates toward anterior mesendoderm, in a manner that is dependent on Nodal signaling. Taken together, our findings support a model in which Cripto can function in trans as an intercellular mediator of Nodal signaling activity.
机译:已知几种与膜相关的蛋白质可在发育过程中调节有效的形态发生信号的活性和范围。特别地,EGF-CFC家族的成员编码与糖基磷脂酰肌醇(GPI)相关的蛋白质,这些蛋白质对于转化生长因子β(TGFbeta)配体Nodal的活性至关重要,该因子在建立脊椎动物身体计划中起着核心作用。遗传和生化研究表明,EGF-CFC蛋白可作为Nodal的细胞自主共受体。相反,细胞培养数据表明,哺乳动物的EGF-CFC蛋白Cripto可以作为分泌的信号转导因子。在这里,我们显示Cripto在小鼠胚胎的轴向中胚层形成过程中非细胞自主作用,并且在体内可能具有细胞间信号传导活性。亚型突变体的表型分析表明,Cripto对于在胃形成过程中形成脊索板,脊索中胚层和前肠内胚层至关重要。值得注意的是,Cripto无效突变细胞很容易在嵌合体中参与这些组织,表明非细胞自主性。与这些功能丧失分析一致的是,在鸡胚中进行的功能获得实验表明,淋巴结/头部过程中胚层暴露于可溶性Cripto蛋白会导致细胞命运向前中胚层的变化,这取决于结节的方式。信号。综上,我们的发现支持了一种模式,其中Cripto可以反式作为Nodal信号传导活性的细胞间介体起作用。

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