首页> 外文期刊>Apoptosis: An international journal on programmed cell death >Two-factor specification of apoptosis: TGF-beta signaling acts cooperatively with ecdysone signaling to induce cell- and stage-specific apoptosis of larval neurons during metamorphosis in Drosophila melanogaster
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Two-factor specification of apoptosis: TGF-beta signaling acts cooperatively with ecdysone signaling to induce cell- and stage-specific apoptosis of larval neurons during metamorphosis in Drosophila melanogaster

机译:细胞凋亡的双因素规范:TGF-Beta信号传导与蜕膜信号传导,在果蝇Melanogaster的变态期间诱导幼虫神经元的细胞和阶段特异性凋亡

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Developmentally regulated programmed cell death (PCD) is one of the key cellular events for precise controlling of neuronal population during postembryonic development of the central nervous system. Previously we have shown that a group of corazonin-producing peptidergic neurons (vCrz) undergo apoptosis in response to ecdysone signaling via ecdysone receptor (EcR)-B isoforms and Ultraspiracle during early phase of metamorphosis. Further utilizing genetic, transgenic, and mosaic analyses, we have found that TGF-beta signaling mediated by a glia-produced ligand, Myoglianin, type-I receptor Baboon (particularly Babo-A isoform) and dSmad2, is also required autonomously for PCD of the vCrz neurons. Our studies show that TGF-beta signaling is not acting epistatically to EcR or vice versa. We also show that ectopic expression of a constitutively active phosphomimetic form of dSmad2 (dSmad2(PM)) is capable of inducing premature death of vCrz neurons in larva but not other larval neurons. Intriguingly, the dSmad2(PM)-mediated killing is completely suppressed by coexpression of a dominant-negative form of EcR (EcR(DN)), suggesting that EcR function is required for the proapoptotic dSmad2(PM) function. Based on these data, we suggest that TGF-beta and ecdysone signaling pathways act cooperatively to induce vCrz neuronal PCD. We propose that this type of two-factor authentication is a key developmental strategy to ensure the timely PCD of specific larval neurons during metamorphosis.
机译:发育管制规划的细胞死亡(PCD)是用于精确控制中枢神经系统后后期培养的神经元群的关键细胞事件之一。此前我们已经表明,在经常经常经常变态期间经由蜕皮酮受体(ECR)-B同种型和超吸引,产生一组产生的基因酮肽神经元(VCRZ)经历凋亡。进一步利用遗传,转基因和马赛克分析,我们发现由胶质增生的配体,肌蛋白,I型受体狒狒(特别是Babo-A同种型)和DSmAd2介导的TGF-β发信号也是自主的,用于PCD vcrz神经元。我们的研究表明,TGF-Beta信号传导并未向ECR透明,反之亦然。我们还表明,组成型活性磷酸磷酸化形式的DSMAD2(DSMAD2(DSMAD2(PM))的异位表达能够在幼虫中诱导VCRZ神经元的过早死亡,但不是其他幼虫神经元。有趣的是,通过ECR(ECR(DN))的主体负形形式的共表达完全抑制DSMAD2(PM)介导的杀伤,表明促型DSMAD2(PM)功能需要ECR功能。基于这些数据,我们建议TGF-Beta和Ecdysone信号传导途径采用诱导VCRZ神经元PCD。我们建议这种类型的双因素认证是一种关键的发展策略,以确保在变态期间的特定幼虫神经元的及时PCD。

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