Nishimura Taki, Tamura Norito, Kono Nozomu, Shimanaka Yuta, Arai Hiroyuki, Yamamoto Hayashi, Mizushima Noboru
Department of Biochemistry and Molecular Biology, Graduate School and Faculty of Medicine, The University of Tokyo, Tokyo, Japan
Department of Biochemistry and Molecular Biology, Graduate School and Faculty of Medicine, The University of Tokyo, Tokyo, Japan.
EMBO J. 2017 Jun 14;36(12):1719-1735. doi: 10.15252/embj.201695189. Epub 2017 May 11.
The autophagosome, a double-membrane structure mediating degradation of cytoplasmic materials by macroautophagy, is formed in close proximity to the endoplasmic reticulum (ER). However, how the ER membrane is involved in autophagy initiation and to which membrane structures the autophagy-initiation complex is localized have not been fully characterized. Here, we were able to biochemically analyze autophagic intermediate membranes and show that the autophagy-initiation complex containing ULK and FIP200 first associates with the ER membrane. To further characterize the ER subdomain, we screened phospholipid biosynthetic enzymes and found that the autophagy-initiation complex localizes to phosphatidylinositol synthase (PIS)-enriched ER subdomains. Then, the initiation complex translocates to the ATG9A-positive autophagosome precursors in a PI3P-dependent manner. Depletion of phosphatidylinositol (PI) by targeting bacterial PI-specific phospholipase C to the PIS domain impairs recruitment of downstream autophagy factors and autophagosome formation. These findings suggest that the autophagy-initiation complex, the PIS-enriched ER subdomain, and ATG9A vesicles together initiate autophagosome formation.
自噬体是一种通过巨自噬介导细胞质物质降解的双膜结构,在内质网(ER)附近形成。然而,内质网膜如何参与自噬起始以及自噬起始复合物定位于哪些膜结构尚未完全明确。在这里,我们能够对自噬中间膜进行生化分析,并表明含有ULK和FIP200的自噬起始复合物首先与内质网膜结合。为了进一步表征内质网亚结构域,我们筛选了磷脂生物合成酶,发现自噬起始复合物定位于富含磷脂酰肌醇合成酶(PIS)的内质网亚结构域。然后,起始复合物以PI3P依赖的方式转运至ATG9A阳性的自噬体前体。通过将细菌PI特异性磷脂酶C靶向PIS结构域来消耗磷脂酰肌醇(PI),会损害下游自噬因子的募集和自噬体形成。这些发现表明,自噬起始复合物、富含PIS的内质网亚结构域和ATG9A囊泡共同启动自噬体形成。