首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Nicastrin controls aspects of photoreceptor neuron specification and differentiation in the Drosophila eye.
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Nicastrin controls aspects of photoreceptor neuron specification and differentiation in the Drosophila eye.

机译:尼卡斯特林控制果蝇眼中感光神经元规格和分化的各个方面。

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摘要

Nicastrin is a component of the Notch signaling pathway involved in proteolytic release of the Notch receptor intracellular domain. It has been postulated that intracellular Notch is required within the nucleus of fly eye progenitor cells to enhance (pro-neural enhancement) and then repress (lateral inhibition) transcription of pro-neural genes. We present here an analysis of Nicastrin function during eye development and find that Nicastrin is essential to early photoreceptor neuron development. Nicastrin mutant tissue displays neuronal loss or hyperplasia; these phenotypes can be rescued by targeted expression of an intracellular form of Notch. Thus, nuclear translocation of Notch and its direct regulation of gene expression appear to be critical to pro-neural enhancement as well as lateral inhibition. In addition, we show that Nicastrin as well as Notch are required to maintain normal R-cell morphology, because the nuclei of mutant photoreceptor neurons cannot maintain their proper position. Thus, Notch signaling plays a role, not only in cell fate specification, but also in differentiation of photoreceptor neurons.
机译:尼卡斯特林是Notch受体细胞内结构域蛋白水解释放的Notch信号通路的一个组成部分。据推测,在蝇眼祖细胞的细胞核内需要细胞内Notch以增强(前神经增强),然后抑制(侧向抑制)前神经基因的转录。我们在这里对眼发育过程中的尼卡斯特林功能进行分析,发现尼卡斯特林对早期感光神经元的发育至关重要。尼卡斯特林突变组织显示神经元丢失或增生。这些表型可以通过Notch的细胞内形式的靶向表达来挽救。因此,Notch的核易位及其对基因表达的直接调节对于促神经元增强和横向抑制似乎至关重要。此外,我们表明,Nicastrin和Notch是维持正常R细胞形态所必需的,因为突变的感光神经元的细胞核无法维持其适当的位置。因此,Notch信号传导不仅在细胞命运规范中起作用,而且在感光神经元的分化中也起作用。

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