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首页> 外文期刊>Mechanisms of Development >The Drosophila caspase DRONC is required for metamorphosis and cell death in response to irradiation and developmental signals
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The Drosophila caspase DRONC is required for metamorphosis and cell death in response to irradiation and developmental signals

机译:果蝇胱天蛋白酶DRONC是响应辐射和发育信号而发生的变形和细胞死亡所必需的

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摘要

Cell death is essential for eliminating excess cells during development as well as removing damaged cells. While multiple conserved apoptosis pathways involving different cascades of caspases, which are cysteine proteases, have been identified, their regulation in the context of a developing organism is not very well understood. Expression of the Drosophila caspase-9 homolog, DRONC, can be induced by ecdysone, a steroid hormone, which induces metamorphosis. To elucidate the functional role of DRONC during metamorphosis and for cell death during development we have generated and analyzed two loss-of-function alleles of DRONC. We report that DRONC is required for developmentally induced neuroblast cell death and apoptosis in response to X irradiation. DRONC mutants show reduced pupariation even in the presence of high levels of ecdysone and impaired cell death of larval midgut. The levels of ecdysone-inducible transcripts such as E75A and Reaper (Rpr) are normal in the absence of DRONC, suggesting that DRONC acts downstream of these genes. In addition, Reaper and Grim, but not Hid induced apoptosis is sensitive to a reduction of DRONC levels. Our study places DRONC at a central point of convergence for multiple cell death pathways and for the ecdysone pathway regulating metamorphosis.
机译:细胞死亡对于消除发育过程中过量的细胞以及清除受损的细胞至关重要。虽然已经鉴定出涉及半胱氨酸蛋白酶的不同级联的半胱氨酸蛋白酶的多个保守的凋亡途径,但是它们在发育中的生物体中的调控还不是很清楚。果蝇半胱氨酸半胱天冬酶9同源物DRONC的表达可以通过蜕皮激素(一种类固醇激素,诱导变态)诱导。为了阐明DRONC在变态过程中的功能性作用以及发育过程中细胞死亡的作用,我们生成并分析了DRONC的两个功能缺失等位基因。我们报告说,DRONC是发育诱导的神经母细胞死亡和细胞凋亡响应X辐射所必需的。即使存在高水平的蜕皮激素,DRONC突变体的幼体减少,幼虫中肠的细胞死亡也受到损害。在没有DRONC的情况下,蜕皮激素诱导的转录本(例如E75A和Reaper(Rpr))的水平是正常的,这表明DRONC在这些基因的下游起作用。此外,收割者和死神,但不是Hid诱导的细胞凋亡对DRONC水平的降低敏感。我们的研究将DRONC置于多个细胞死亡途径和蜕皮激素途径调控变态的汇合中心。

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