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PpAtg30 tags peroxisomes for turnover by selective autophagy

机译:PpAtg30通过选择自噬标记过氧化物酶体的转换

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摘要

Autophagy, an intrinsically nonselective process, can also target selective cargo for degradation. The mechanism of selective peroxisome turnover by autophagy-related processes (pexophagy), termed micropexophagy and macropexophagy, is unknown. We show how a Pichia pastoris protein, PpAtg30, mediates peroxisome selection during pexophagy. It is necessary for pexophagy, but not for other selective and nonselective autophagy-related processes. It localizes at the peroxisome membrane via interaction with peroxins, and during pexophagy it colocalizes transiently at the preautophagosomal structure (PAS) and interacts with the autophagy machinery. PpAtg30 is required for formation of pexophagy intermediates, such as the micropexophagy apparatus (MIPA) and the pexophagosome, (Ppg). During pexophagy, PpAtg30 undergoes multiple phosphorylations, at least one of which is required for pexophagy. PpAtg30 overexpression stimulates pexophagy even under peroxisome-induction conditions, impairing peroxisome biogenesis. Therefore, PpAtg30 is a key player in the selection of peroxisomes as cargo and in their delivery to the autophagy machinery for pexophagy.
机译:自噬是本质上非选择性的过程,也可以将选择性货物作为降解目标。通过自噬相关过程(咽)选择性过氧化物酶更新的机制,称为微咽和大咽,尚不清楚。我们展示了毕赤酵母中的PpAtg30蛋白如何在exophophagy期间介导过氧化物酶体的选择。排汗是必需的,但其他选择性和非选择性自噬相关过程则不需要。它通过与过氧化物酶的相互作用而定位在过氧化物酶体膜上,并且在exexophagy期间,它在自吞噬前结构(PAS)处瞬时共定位并与自噬机制相互作用。 PpAtg30是形成自噬中间体(如微自噬器械(MIPA)和自噬小体(Ppg))所必需的。在排脓过程中,PpAtg30会经历多次磷酸化,而至少是其中的一种磷酸化。即使在过氧化物酶体诱导条件下,PpAtg30的过表达也会刺激前列腺炎,损害过氧化物酶体的生物发生。因此,PpAtg30在选择过氧化物酶体作为货物以及将其输送至自噬机器进行exophophagy方面起着关键作用。

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