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首页> 外文期刊>Mechanisms of Development >XNAP, a conserved ankyrin repeat-containing protein with a role in the Notch pathway during Xenopus primary neurogenesis
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XNAP, a conserved ankyrin repeat-containing protein with a role in the Notch pathway during Xenopus primary neurogenesis

机译:XNAP,一种保守的含锚蛋白重复序列​​的蛋白质,在非洲爪蟾原代神经发生过程中在Notch通路中起作用

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摘要

The Notch signaling pathway plays an important role in many cell-fate decisions during development. Here we investigate the regulation and function of the conserved gene XNAP, which is a member of the Delta-Notch synexpression group in Xenopus. XNAPencodes a small protein with two C-terminal tandem ankyrin repeats which is expressed in the neurectoderm and in the presomitic mesoderm in a pattern that resembles that of other component of the Notch pathway. When a myc-tag form of XNAP is overexpressed in Xenopus or Hela cells, XNAP protein is detected both in the nucleus and the cytoplasm. In embryos and in animal cap assays, XNAP expression is activated, perhaps directly, by the Notch pathway and this activation appears to be Su(H) dependent. Overexpression of XNAP in embryos decreases Notch signaling, which leads to an increase in the number of primary neurons that form within the domains of the neural plate where neurogenesis normally occurs. In culture Hela cells, XNAP overexpression interferes with ICD activation of a Notch regulated reporter gene. Together, these data indicate that XNAP is a novel target of the Notch pathway that may, in a feedback loop, modulate its activity.
机译:Notch信号通路在发育过程中的许多细胞命运决策中起着重要作用。在这里,我们研究了保守基因XNAP的调控和功能,该基因是非洲爪蟾的Delta-Notch协同表达组的成员。 XNAP编码具有两个C端串联锚蛋白重复序列​​的小蛋白,该蛋白在神经胚层和早熟中胚层中表达,其表达方式类似于Notch途径的其他成分。当XNAP的myc标签形式在非洲爪蟾或Hela细胞中过表达时,在细胞核和细胞质中都检测到XNAP蛋白。在胚胎和动物帽分析中,XNAP表达可能被Notch途径直接激活,这种激活似乎是Su(H)依赖性的。 XNAP在胚胎中的过度表达会降低Notch信号传导,从而导致在通常发生神经发生的神经板区域内形成的初级神经元数量增加。在培养的Hela细胞中,XNAP的过表达会干扰Notch调控的报告基因的ICD激活。总之,这些数据表明XNAP是Notch途径的新型靶标,可以在反馈回路中调节其活性。

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