在果蝇感觉器官前体细胞中,网格蛋白接头AP-1和Stratum通过平行通路控制Notch的激活

K. Bellec, M. Pinot, I. Gicquel, R. Le Borgne
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引用次数: 7

摘要

果蝇感觉器官前体不对称分裂产生pIIa/pIIb细胞,其身份依赖于细胞分裂时Notch的激活。尽管Notch存在于pIIa- piib界面的顶端和基部,但据报道,Notch的基底池是pIIa细胞中Notch激活的主要贡献者。谱系内信号需要Notch、其配体Delta和其运输伙伴Sanpodo的适当的顶底靶向。我们以前报道过AP-1和Stratum调节Notch和Sanpodo从跨高尔基网络到基底外膜的贩运。AP-1或Stratum的缺失导致轻度Notch功能获得表型。在这里,我们报告了它们的伴随丢失导致了一个渗透的Notch功能获得表型,表明它们控制平行通路。虽然细胞命运决定因素的不平等分配和细胞极性没有受到影响,但我们观察到,在pIIa-pIIb的顶端界面上,具有信号能力的Notch以及Delta和Sanpodo的数量增加了,而Notch的基础池则减少了。我们提出AP-1和Stratum在平行通路上运作,以定位Notch并控制受体激活的发生。总结:Notch通路的激活依赖于Notch信号参与者的正确定位。我们报道AP-1和Stratum在不对称细胞分裂过程中确保Notch的基底侧靶向。
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The Clathrin adaptor AP-1 and Stratum act in parallel pathways to control Notch activation in Drosophila sensory organ precursors cells
ABSTRACT Drosophila sensory organ precursors divide asymmetrically to generate pIIa/pIIb cells, the identity of which relies on activation of Notch at cytokinesis. Although Notch is present apically and basally relative to the midbody at the pIIa-pIIb interface, the basal pool of Notch is reported to be the main contributor for Notch activation in the pIIa cell. Intra-lineage signalling requires appropriate apico-basal targeting of Notch, its ligand Delta and its trafficking partner Sanpodo. We have previously reported that AP-1 and Stratum regulate the trafficking of Notch and Sanpodo from the trans-Golgi network to the basolateral membrane. Loss of AP-1 or Stratum caused mild Notch gain-of-function phenotypes. Here, we report that their concomitant loss results in a penetrant Notch gain-of-function phenotype, indicating that they control parallel pathways. Although unequal partitioning of cell fate determinants and cell polarity were unaffected, we observed increased amounts of signalling-competent Notch as well as Delta and Sanpodo at the apical pIIa-pIIb interface, at the expense of the basal pool of Notch. We propose that AP-1 and Stratum operate in parallel pathways to localize Notch and control where receptor activation takes place. Summary: The Notch pathway activation relies on the correct localization of the Notch signalling actors. We report that AP-1 and Stratum ensure the basolateral targeting of Notch during asymmetric cell division.
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