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Loss of Drosophila Vps16A enhances autophagosome formation through reduced Tor activity

机译:果蝇Vps16A的丢失通过降低Tor活性增强了自噬体的形成

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摘要

The HOPS tethering complex facilitates autophagosome-lysosome fusion by binding to Syx17 (Syntaxin 17), the autophagosomal SNARE. Here we show that loss of the core HOPS complex subunit Vps16A enhances autophagosome formation and slows down Drosophila development. Mechanistically, Tor kinase is less active in Vps16A mutants likely due to impaired endocytic and biosynthetic transport to the lysosome, a site of its activation. Tor reactivation by overexpression of Rheb suppresses autophagosome formation and restores growth and developmental timing in these animals. Thus, Vps16A reduces autophagosome numbers both by indirectly restricting their formation rate and by directly promoting their clearance. In contrast, the loss of Syx17 blocks autophagic flux without affecting the induction step in Drosophila.
机译:HOPS束缚复合体通过与自噬体SNARE Syx17(Syntaxin 17)结合而促进自噬体-溶酶体融合。在这里,我们显示核心HOPS复杂亚基Vps16A的丢失增强了自噬体的形成并减慢了果蝇的发育。从机理上讲,Tor激酶在Vps16A突变体中的活性较低,这可能是由于内吞和生物合成向溶酶体(其激活位点)的运输受损所致。 Rheb的过表达导致Tor的重新激活抑制了自噬体的形成,并恢复了这些动物的生长和发育时间。因此,Vps16A通过间接限制其形成速率和直接提高其清除率而降低了自噬体的数量。相反,Syx17的丢失会阻止自噬通量,而不会影响果蝇的诱导步骤。

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