首页> 美国卫生研究院文献>Genetics >Growth Coordination During Drosophila melanogaster Imaginal Disc Regeneration Is Mediated by Signaling Through the Relaxin Receptor Lgr3 in the Prothoracic Gland
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Growth Coordination During Drosophila melanogaster Imaginal Disc Regeneration Is Mediated by Signaling Through the Relaxin Receptor Lgr3 in the Prothoracic Gland

机译:果蝇果蝇盘的再生过程中的生长协调通过信号通过前胸腺中的松弛素受体Lgr3介导。

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摘要

Damage to Drosophila melanogaster imaginal discs activates a regeneration checkpoint that (1) extends larval development and (2) coordinates the regeneration of the damaged disc with the growth of undamaged discs. These two systemic responses to damage are both mediated by Dilp8, a member of the insulin/insulin-like growth factor/relaxin family of peptide hormones, which is released by regenerating imaginal discs. Growth coordination between regenerating and undamaged imaginal discs is dependent on Dilp8 activation of nitric oxide synthase (NOS) in the prothoracic gland (PG), which slows the growth of undamaged discs by limiting ecdysone synthesis. Here we demonstrate that the Drosophila relaxin receptor homolog Lgr3, a leucine-rich repeat-containing G-protein-coupled receptor, is required for Dilp8-dependent growth coordination and developmental delay during the regeneration checkpoint. Lgr3 regulates these responses to damage via distinct mechanisms in different tissues. Using tissue-specific RNA-interference disruption of expression, we show that Lgr3 functions in the PG upstream of NOS, and is necessary for NOS activation and growth coordination during the regeneration checkpoint. When Lgr3 is depleted from neurons, imaginal disc damage no longer produces either developmental delay or growth inhibition. To reconcile these discrete tissue requirements for Lgr3 during regenerative growth coordination, we demonstrate that Lgr3 activity in both the CNS and PG is necessary for NOS activation in the PG following damage. Together, these results identify new roles for a relaxin receptor in mediating damage signaling to regulate growth and developmental timing.
机译:果蝇黑视盘的损坏激活了一个再生检查点,该检查点(1)延长幼体的发育,(2)协调受损盘的再生与未损坏盘的生长。这两种对损伤的全身性反应均由Dilp8介导,Dilp8是肽激素的胰岛素/胰岛素样生长因子/松弛素家族的一员,通过再生假想椎间盘释放。再生和未损坏的假想椎间盘之间的生长协调取决于前胸腺(PG)中一氧化氮合酶(NOS)的Dilp8激活,这会通过限制蜕皮激素的合成来减慢未损坏的椎间盘的生长。在这里,我们证明果蝇松弛素受体同源物Lgr3,富含亮氨酸重复序列的G蛋白偶联受体,是Dilp8依赖的生长协调和再生检查点发育延迟所必需的。 Lgr3通过不同组织中的不同机制调节这些损伤反应。使用表达的组织特异性RNA干扰破坏,我们显示Lgr3在NOS上游的PG中起作用,并且对于再生检查点期间NOS激活和生长协调是必需的。当Lgr3从神经元中耗竭时,假想椎间盘损伤不再产生发育延迟或生长抑制。为了调和再生生长协调过程中Lgr3的这些离散的组织要求,我们证明中枢神经系统和PG中的Lgr3活性对于受损后PG中的NOS激活是必需的。总之,这些结果确定了松弛素受体在介导损伤信号以调节生长和发育时机中的新作用。

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