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首页> 外文期刊>Mechanisms of Development >FGF signaling is necessary for establishing gut tube domains along the anterior-posterior axis in vivo
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FGF signaling is necessary for establishing gut tube domains along the anterior-posterior axis in vivo

机译:FGF信号对于在体内沿前后轴建立肠道管结构域必不可少

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摘要

At the end of gastrulation in avians and mammals, the endoderm germ layer is an undetermined sheet of cells. Over the next 24-48 h, endoderm forms a primitive tube and becomes regionally specified along the anterior-posterior axis. Fgf4 is expressed in gastrulation and somite stage embryos in the vicinity of posterior endoderm that gives rise to the posterior gut. Moreover, the posterior endoderm adjacent to Fgf4-expressing mesoderm expresses the FGF-target genes Sprouty1 and 2 suggesting that endoderm respond to an FGF signal in vivo. Here, we report the first evidence suggesting that FGF4-mediated signaling is required for establishing gut tube domains along the A-P axis in vivo. At the gastrula stage, exposing endoderm to recombinant FGF4 protein results in an anterior shift in the Pdx1 and CdxB expression domains. These expression domains remain sensitive to FGF4 levels throughout early somite stages. Additionally, FGF4 represses the anterior endoderm markers Hex1 and Nkx2.1 and disrupts foregut morphogenesis. FGF signaling directly patterns endoderm and not via a secondary induction from another germ layer, as shown by expression of dominant-active FGFR1 specifically in endoderm, which results in ectopic anterior expression of Pdx1. Loss-of-function studies using the FGF receptor antagonist SU5402 demonstrate that FGF signaling is necessary for establishing midgut gene expression and for maintaining gene expression boundaries between the midgut and hindgut from gastrulation through somitogenesis. Moreover, FGF signaling in the primitive streak is necessary to restrict Hex1 expression to anterior endoderm. These data show that FGF signaling is critical for patterning the gut tube by promoting posterior and inhibiting anterior endoderm cell fate.
机译:在鸟类和哺乳动物的胃排毒结束时,内胚层胚芽层是一片未确定的细胞层。在接下来的24-48小时内,内胚层形成原始管,并沿前后轴在区域内指定。 Fgf4在后内胚层附近的胃形成和胚期阶段胚中表达,产生后肠。此外,与表达Fgf4的中胚层相邻的后内胚层表达FGF靶基因Sprouty1和2,表明内胚层在体内对FGF信号作出响应。在这里,我们报告的第一个证据表明,在体内沿A-P轴建立肠道管结构域需要FGF4介导的信号传导。在下腹阶段,将内胚层暴露于重组FGF4蛋白会导致Pdx1和CdxB表达域的前移。这些表达域在整个体节早期对FGF4水平仍然敏感。此外,FGF4抑制前内胚层标记物Hex1和Nkx2.1并破坏前肠形态发生。 FGF信号直接形成内胚层的模式,而不是通过另一种细菌层的二次诱导,如内胚层中显性激活的FGFR1的特异性表达所表明的那样,这会导致Pdx1的异位前表达。使用FGF受体拮抗剂SU5402进行功能丧失的研究表明,FGF信号对于建立中肠基因表达并维持中肠和后肠之间的基因表达边界(从胃泌乳到通过体发生发生)是必要的。此外,原始条纹中的FGF信号传导对于将Hex1表达限制在前内胚层是必要的。这些数据表明,FGF信号通过促进后部和抑制前内胚层细胞的命运,对于构图肠管至关重要。

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