Department of Cell Biology, University of Virginia School of Medicine, Charlottesville, VA 22902, USA.
Department of Cell Biology, University of Virginia School of Medicine, Charlottesville, VA 22902, USA
Development. 2021 Mar 19;148(6):dev195057. doi: 10.1242/dev.195057.
Regeneration of imaginal discs, larval precursors to adult tissues, activates a regeneration checkpoint that coordinates regenerative growth with developmental progression. This regeneration checkpoint results from the release of the relaxin-family peptide Dilp8 from regenerating imaginal tissues. Secreted Dilp8 protein is detected within the imaginal disc lumen, in which it is separated from its receptor target Lgr3, which is expressed in the brain and prothoracic gland, by the disc epithelial barrier. Here, we demonstrate that following damage the imaginal disc epithelial barrier limits Dilp8 signaling and the duration of regeneration checkpoint delay. We also find that the barrier becomes increasingly impermeable to the transepithelial diffusion of labeled dextran during the second half of the third instar. This change in barrier permeability is driven by the steroid hormone ecdysone and correlates with changes in localization of Coracle, a component of the septate junctions that is required for the late-larval impermeable epithelial barrier. Based on these observations, we propose that the imaginal disc epithelial barrier regulates the duration of the regenerative checkpoint, providing a mechanism by which tissue function can signal the completion of regeneration.
成虫盘(成虫组织的幼虫前体)的再生会激活一个再生检查点,该检查点将再生生长与发育进程协调起来。这个再生检查点是由再生的成虫组织释放松弛素家族肽Dilp8引起的。分泌的Dilp8蛋白在成虫盘腔内被检测到,在那里它通过盘上皮屏障与其受体靶点Lgr3分离,Lgr3在脑和前胸腺中表达。在这里,我们证明在损伤后,成虫盘上皮屏障限制了Dilp8信号传导和再生检查点延迟的持续时间。我们还发现,在三龄幼虫后半期,该屏障对标记葡聚糖的跨上皮扩散变得越来越不可渗透。这种屏障通透性的变化是由类固醇激素蜕皮激素驱动的,并且与紧密连接的一个成分Coracle的定位变化相关,Coracle是晚期幼虫不可渗透上皮屏障所必需的。基于这些观察结果,我们提出成虫盘上皮屏障调节再生检查点的持续时间,提供了一种组织功能可以发出再生完成信号的机制。