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Binary Cell Fate Decisions and Fate Transformation in the Drosophila Larval Eye

机译:果蝇幼虫眼中的二元细胞命运决定和命运转化

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摘要

The functionality of sensory neurons is defined by the expression of specific sensory receptor genes. During the development of the Drosophila larval eye, photoreceptor neurons (PRs) make a binary choice to express either the blue-sensitive Rhodopsin 5 (Rh5) or the green-sensitive Rhodopsin 6 (Rh6). Later during metamorphosis, ecdysone signaling induces a cell fate and sensory receptor switch: Rh5-PRs are re-programmed to express Rh6 and become the eyelet, a small group of extraretinal PRs involved in circadian entrainment. However, the genetic and molecular mechanisms of how the binary cell fate decisions are made and switched remain poorly understood. We show that interplay of two transcription factors Senseless (Sens) and Hazy control cell fate decisions, terminal differentiation of the larval eye and its transformation into eyelet. During initial differentiation, a pulse of Sens expression in primary precursors regulates their differentiation into Rh5-PRs and repression of an alternative Rh6-cell fate. Later, during the transformation of the larval eye into the adult eyelet, Sens serves as an anti-apoptotic factor in Rh5-PRs, which helps in promoting survival of Rh5-PRs during metamorphosis and is subsequently required for Rh6 expression. Comparably, during PR differentiation Hazy functions in initiation and maintenance of rhodopsin expression. Hazy represses Sens specifically in the Rh6-PRs, allowing them to die during metamorphosis. Our findings show that the same transcription factors regulate diverse aspects of larval and adult PR development at different stages and in a context-dependent manner.
机译:感觉神经元的功能由特定感觉受体基因的表达定义。在果蝇幼虫眼的发育过程中,感光神经元(PRs)做出二进制选择来表达蓝敏感的视紫红质5(Rh5)或绿敏感的视紫红质6(Rh6)。后来在蜕变过程中,蜕皮激素信号传导引起细胞命运和感觉受体转换:Rh5-PRs被重新编程以表达Rh6并成为孔眼,这是一小群参与昼夜节律的视网膜外PRs。然而,关于如何决定和改变二元细胞命运的遗传和分子机制仍然知之甚少。我们表明两个转录因子无意义(感)和朦胧的控制细胞命运决定,幼虫眼的终末分化及其转化成孔眼的相互作用。在初始分化过程中,初级前体中的Sens表达脉冲调节其分化为Rh5-PRs和抑制其他Rh6细胞命运。后来,在将幼虫眼转化为成年小孔的过程中,Sens充当Rh5-PRs中的抗凋亡因子,有助于在变态过程中促进Rh5-PRs的存活,并随后成为Rh6表达所必需的。相比之下,在PR分化过程中,朦胧在视紫红质表达的起始和维持中起作用。朦胧特别抑制Rh6-PR中的Sens,使其在变态过程中死亡。我们的研究结果表明,相同的转录因子在不同阶段以上下文相关的方式调节幼虫和成年PR发育的各个方面。

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