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Bursicon Signaling Mutations Separate the Epithelial–Mesenchymal Transition From Programmed Cell Death During Drosophila melanogaster Wing Maturation

机译:Bursicon信号突变从果蝇黑翼翅成熟过程中的程序性细胞死亡中分离上皮-间质转化。

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摘要

Following eclosion from the pupal case, wings of the immature adult fly unfold and expand to present a flat wing blade. During expansion the epithelia, which earlier produced the wing cuticle, delaminate from the cuticle, and the epithelial cells undergo an epithelial–mesenchymal transition (EMT). The resulting fibroblast-like cells then initiate a programmed cell death, produce an extracellular matrix that bonds dorsal and ventral wing cuticles, and exit the wing. Mutants that block wing expansion cause persistence of intact epithelia within the unexpanded wing. However, the normal progression of chromatin condensation and fragmentation accompanying programmed cell death in these cells proceeds with an approximately normal time course. These observations establish that the Bursicon/Rickets signaling pathway is necessary for both wing expansion and initiation of the EMT that leads to removal of the epithelial cells from the wing. They demonstrate that a different signal can be used to activate programmed cell death and show that two distinct genetic programs are in progress in these cells during wing maturation.
机译:从the壳中脱出后,未成年成年幼虫的翅膀展开并膨胀,呈现出扁平的翼状叶片。在扩张过程中,较早产生翼状角质层的上皮从角质层剥离,并且上皮细胞经历上皮-间质转化(EMT)。然后,产生的成纤维细胞样细胞引发程序性细胞死亡,产生结合背侧和腹侧翼皮角质层并离开侧翼的细胞外基质。阻碍机翼扩张的突变体会导致未扩张的机翼持续存在完整的上皮细胞。但是,伴随这些细胞中程序性细胞死亡的染色质浓缩和断裂的正常进程以大约正常的时间进程进行。这些观察结果表明,Bursicon / Rickets信号通路对于机翼扩展和EMT的启动都是必需的,从而导致机翼上皮细胞的去除。他们证明了可以使用不同的信号来激活程序性细胞死亡,并且表明在机翼成熟过程中这些细胞中正在进行两种不同的遗传程序。

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