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Complex cellular and subcellular regulation of notch expression during embryonic and imaginal development of Drosophila: implications for notch function

机译:果蝇胚胎和想象发育过程中Notch表达的复杂细胞和亚细胞调节:对Notch功能的影响

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摘要

The Notch gene in Drosophila encodes a transmembrane protein with homology to EGF that appears to mediate cell-cell interactions necessary for proper epidermal vs. neural fate decisions. In this study, we examine Notch expression in detail throughout embryonic and imaginal development using confocal laser-scanning microscopy and specific mAb probes. We find that Notch is expressed in a tissue- specific manner as early as the cellular blastoderm stage, when cells of the presumptive mesoderm clearly express less Notch than adjacent ectodermal precursors. Notch is abundantly expressed during the initial determination of neuronal lineages, such as the embryonic neuroblasts and the precursors of sensory neurons in the imaginal disc epithelia, but expression quickly decreases during subsequent differentiation. These changing patterns of Notch expression do not correlate well with cell movements, and thus do not appear to support the notion that the major function of Notch is to maintain epithelial integrity via adhesive mechanisms. Our data suggest instead that Notch may act as a cell-surface receptor, perhaps functioning in the lateral inhibition mechanism that is necessary for proper spacing of neuronal precursors.
机译:果蝇中的Notch基因编码一种与EGF具有同源性的跨膜蛋白,该蛋白似乎介导了正确决定表皮和神经命运的必要细胞-细胞相互作用。在这项研究中,我们使用共聚焦激光扫描显微镜和特定mAb探针详细检查了Notch在整个胚胎和想象发育过程中的表达。我们发现,Notch早在细胞胚层阶段就以组织特异性的方式表达,此时假定中胚层的细胞明显表达的Notch低于邻近的外胚层前体。 Notch在最初确定神经元谱系(如胚胎神经母细胞和假想视盘上皮细胞中的感觉神经元前体)期间大量表达,但在随后的分化过程中表达迅速降低。 Notch表达的这些变化模式与细胞运动没有很好的相关性,因此似乎不支持Notch的主要功能是通过粘附机制维持上皮完整性的观点。我们的数据反而表明,Notch可能充当细胞表面受体,可能在横向抑制机制中起作用,而横向抑制机制是神经元前体适当间隔所必需的。

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