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The Atg16L complex specifies the site of LC3 lipidation for membrane biogenesis in autophagy

机译:Atg16L复合体指定自噬中膜生物发生的LC3脂质化位点

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Two ubiquitin-like molecules, Atg12 and LC3/Atg8, are involved in autophagosome biogenesis. Atg12 is conjugated to Atg5 and forms an similar to 800-kDa protein complex with Atg16L ( referred to as Atg16L complex). LC3/Atg8 is conjugated to phosphatidylethanolamine and is associated with autophagosome formation, perhaps by enabling membrane elongation. Although the Atg16L complex is required for efficient LC3 lipidation, its role is unknown. Here, we show that overexpression of Atg12 or Atg16L inhibits autophagosome formation. Mechanistically, the site of LC3 lipidation is determined by the membrane localization of the Atg16L complex as well as the interaction of Atg12 with Atg3, the E2 enzyme for the LC3 lipidation process. Forced localization of Atg16L to the plasma membrane enabled ectopic LC3 lipidation at that site. We propose that the Atg16L complex is a new type of E3-like enzyme that functions as a scaffold for LC3 lipidation by dynamically localizing to the putative source membranes for autophagosome formation.
机译:两个泛素样分子Atg12和LC3 / Atg8参与自噬体的生物发生。 Atg12与Atg5结合,并与Atg16L形成类似于800-kDa的蛋白质复合物(称为Atg16L复合物)。 LC3 / Atg8与磷脂酰乙醇胺缀合,并可能通过使膜伸长而与自噬体形成相关。尽管有效的LC3脂化需要Atg16L复合物,但其作用尚不清楚。在这里,我们显示Atg12或Atg16L的过表达抑制自噬体的形成。从机制上讲,LC3脂化的位置由Atg16L复合物的膜定位以及Atg12与Atg3(LC3脂化过程的E2酶)之间的相互作用决定。 Atg16L强制定位到质膜使该部位异位LC3脂质化。我们提出Atg16L复合物是一种新型的E3样酶,通过动态定位到假定的源膜来形成自噬体,从而充当LC3脂质化的支架。

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