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Crosstalk between Dpp and Tor signaling coordinates autophagy-dependent midgut degradation

机译:Dpp和Tor信号之间的串扰可调节自噬依赖性中肠降解

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摘要

The majority of developmentally programmed cell death (PCD) is mediated by caspase-dependent apoptosis; however, additional modalities, including autophagy-dependent cell death, have important spatiotemporally restricted functions. Autophagy involves the engulfment of cytoplasmic components in a double membrane vesicle for delivery to the lysosome. An established model for autophagy-dependent PCD is Drosophila larval midgut removal during metamorphosis. Our previous work demonstrated that growth arrest is required to initiate autophagy-dependent midgut degradation and Target of rapamycin (Tor) limits autophagy induction. In further studies, we uncovered a role for Decapentaplegic (Dpp) in coordinating midgut degradation. Here, we provide new data to show that Dpp interacts with Tor during midgut degradation. Inhibiting Tor rescued the block in midgut degradation due to Dpp signaling. We propose that Dpp is upstream of Tor and down-regulation promotes growth arrest and autophagy-dependent midgut degradation. These findings underscore a relationship between Dpp and Tor signaling in the regulation of cell growth and tissue removal.
机译:大部分发育性程序性细胞死亡(PCD)是由caspase依赖性细胞凋亡介导的。然而,其他方式,包括自噬依赖性细胞死亡,具有重要的时空限制功能。自噬涉及吞噬双层膜囊泡中的细胞质成分,以递送至溶酶体。自噬依赖性PCD的已建立模型是变态期间的果蝇幼虫中肠去除。我们以前的工作表明,必须停止生长以启动依赖自噬的中肠降解,而雷帕霉素(Tor)的靶标会限制自噬的诱导。在进一步的研究中,我们发现了十足瘫痪(Dpp)在协调中肠降解中的作用。在这里,我们提供了新的数据来显示Dpp在中肠降解期间与Tor相互作用。抑制Tor通过Dpp信号挽救了中肠降解的阻滞。我们建议Dpp在Tor的上游,下调促进生长停滞和依赖自噬的中肠降解。这些发现强调了Dpp和Tor信号传导之间在细胞生长和组织去除的调节中的关系。

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