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spalt-dependent switching between two cell fates that are induced by the Drosophila EGF receptor.

机译:果蝇EGF受体诱导的两种细胞命运之间依赖于spalt的转换。

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摘要

Signaling from the EGF receptor (EGFR) can trigger the differentiation of a wide variety of cell types in many animal species. We have explored the mechanisms that generate this diversity using the Drosophila peripheral nervous system. In this context, Spitz (SPI) ligand can induce two alternative cell fates from the dorsolateral ectoderm: chordotonal sensory organs and non-neural oenocytes. We show that the overall number of both cell types that are induced is controlled by the degree of EGFR signaling. In addition, the spalt (sal) gene is identified as a critical component of the oenocyte/chordotonal fate switch. Genetic and expression analyses indicate that the SAL zinc-finger protein promotes oenocyte formation and supresses chordotonal organ induction by acting both downstream and in parallel to the EGFR. To explain these findings, we propose a prime-and-respond model. Here, sal functions prior to signaling as a necessary but not sufficient component of the oenocyte prepattern that also serves to raise the apparent threshold for induction by SPI. Subsequently, sal-dependent SAL upregulation is triggered as part of the oenocyte-specific EGFR response. Thus, a combination of SAL in the responding nucleus and increased SPI ligand production sets the binary cell-fate switch in favour of oenocytes. Together, these studies help to explain how one generic signaling pathway can trigger the differentiation of two distinct cell types.
机译:EGF受体(EGFR)发出的信号可以触发许多动物物种中多种细胞类型的分化。我们已经探索了使用果蝇外周神经系统产生这种多样性的机制。在这种情况下,斯皮兹(SPI)配体可以从背外侧外胚层诱导两种替代性的细胞命运:腱索感觉器官和非神经细胞。我们显示,被诱导的两种细胞类型的总数受EGFR信号传导程度的控制。此外,spalt(sal)基因被鉴定为成年细胞/线粒体命运转换的关键组成部分。遗传和表达分析表明,SAL锌指蛋白通过在EGFR下游和与EGFR平行发挥作用,从而促进了卵母细胞的形成并抑制了腱索器官的诱导。为了解释这些发现,我们提出了一个主要反应模型。在此,sal在发信号之前起着作用,是卵母细胞预模式的必要但不充分的组成部分,它也可以提高SPI诱导的表观阈值。随后,sal依赖的SAL上调被触发为成肌细胞特异性EGFR反应的一部分。因此,响应核中SAL的结合以及SPI配体产生的增加使二元细胞命运的转变有利于成年细胞。总之,这些研究有助于解释一个通用的信号通路如何触发两种不同细胞类型的分化。

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