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Atg9 is required for intraluminal vesicles in amphisomes and autolysosomes

机译:两栖小体和自溶酶体的腔内囊泡需要Atg9

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Autophagy is an intracellular recycling and degradation process, which is important for energy metabolism, lipid metabolism, physiological stress response and organism development. During Drosophila development, autophagy is up-regulated in fat body and midgut cells, to control metabolic function and to enable tissue remodelling. Atg9 is the only transmembrane protein involved in the core autophagy machinery and is thought to have a role in autophagosome formation. During Drosophila development, Atg9 co-located with Atg8 autophagosomes, Rab11 endosomes and Lamp1 endosomes-lysosomes. RNAi silencing of Atg9 reduced both the number and the size of autophagosomes during development and caused morphological changes to amphisomes/autolysosomes. In control cells there was compartmentalised acidification corresponding to intraluminal Rab11/Lamp-1 vesicles, but in Atg9 depleted cells there were no intraluminal vesicles and the acidification was not compartmentalised. We concluded that Atg9 is required to form intraluminal vesicles and for localised acidification within amphisomes/autolysosomes, and consequently when depleted, reduced the capacity to degrade and remodel gut tissue during development.
机译:自噬是细胞内的循环和降解过程,对于能量代谢,脂质代谢,生理应激反应和生物发展至关重要。在果蝇发育过程中,脂肪体和中肠细胞中的自噬被上调,以控制代谢功能并使组织重塑。 Atg9是参与核心自噬机制的唯一跨膜蛋白,被认为在自噬体形成中起作用。果蝇发育期间,Atg9与Atg8自噬体,Rab11内体和Lamp1内体溶酶体共处一地。 Atg9的RNAi沉默减少了发育过程中自噬体的数量和大小,并导致了两亲/自溶体的形态变化。在对照细胞中,存在与腔内Rab11 / Lamp-1囊泡相对应的区室酸化,但是在Atg9耗尽的细胞中,没有腔内囊泡且酸化没有区室。我们得出的结论是,Atg9是形成腔内囊泡和在两性体/自溶体中进行局部酸化所必需的,因此,在耗竭时,Atg9会降低其在发育过程中降解和重塑肠道组织的能力。

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