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SNX17 regulates Notch pathway and pancreas development through the retromer-dependent recycling of Jag1

机译:SNX17通过依赖于Jag1的异构体回收来调节Notch途径和胰腺发育

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Background Notch is one of the most important signaling pathways involved in cell fate determination. Activation of the Notch pathway requires the binding of a membrane-bound ligand to the Notch receptor in the adjacent cell which induces proteolytic cleavages and the activation of the receptor. A unique feature of the Notch signaling is that processes such as modification, endocytosis or recycling of the ligand have been reported to play critical roles during Notch signaling, however, the underlying molecular mechanism appears context-dependent and often controversial. Results Here we identified SNX17 as a novel regulator of the Notch pathway. SNX17 is a sorting nexin family protein implicated in vesicular trafficking and we find it is specifically required in the ligand-expressing cells for Notch signaling. Mechanistically, SNX17 regulates the protein level of Jag1a on plasma membrane by binding to Jag1a and facilitating the retromer-dependent recycling of the ligand. In zebrafish, inhibition of this SNX17-mediated Notch signaling pathway results in defects in neurogenesis as well as pancreas development. Conclusions Our results reveal that SNX17, by acting as a cargo-specific adaptor, promotes the retromer dependent recycling of Jag1a and Notch signaling and this pathway is involved in cell fate determination during zebrafish neurogenesis and pancreas development.
机译:背景Notch是细胞命运确定中最重要的信号通路之一。 Notch途径的激活要求膜结合的配体与相邻细胞中的Notch受体结合,从而诱导蛋白水解切割和受体的激活。 Notch信号传导的独特特征是,据报道诸如Notch信号传导过程中配体的修饰,内吞或再循环等过程起着至关重要的作用,但是,其潜在的分子机制似乎取决于上下文,并且经常引起争议。结果在这里,我们确定SNX17是Notch途径的新型调节剂。 SNX17是一种与水泡运输有关的分类神经元家族蛋白,我们发现Notch信号在配体表达细胞中特别需要。从机制上讲,SNX17通过与Jag1a结合并促进配体依赖于异构体的循环来调节质膜上Jag1a的蛋白质水平。在斑马鱼中,这种SNX17介导的Notch信号通路的抑制导致神经发生以及胰腺发育的缺陷。结论我们的结果表明,SNX17通过充当特定货物的衔接子,促进了Jag1a和Notch信号的依赖于异构体的再循环,并且该途径参与了斑马鱼神经发生和胰腺发育过程中细胞命运的确定。

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