Autophagy is an essential cellular recycling process that maintains protein and organelle homeostasis. ATG9A vesicle recruitment is a critical early step in autophagy to initiate autophagosome biogenesis. The mechanisms of ATG9A vesicle recruitment are best understood in the context of starvation-induced nonselective autophagy, whereas less is known about the signals driving ATG9A vesicle recruitment to autophagy initiation sites in the absence of nutrient stress. Here we demonstrate that loss of ATG9A, or the lipid transfer protein ATG2, leads to the accumulation of phosphorylated p62 aggregates in nutrient replete conditions. Furthermore, we show that p62 degradation requires the lipid scramblase activity of ATG9A. Last, we present evidence that polyubiquitin is an essential signal that recruits ATG9A and mediates autophagy foci assembly in nutrient replete cells. Together, our data support a ubiquitin-driven model of ATG9A recruitment and autophagosome formation during basal autophagy.
Ubiquitin-mediated recruitment of the ATG9A-ATG2 lipid transfer complex drives clearance of phosphorylated p62 aggregates.
泛素介导的 ATG9A-ATG2 脂质转移复合物的募集驱动磷酸化 p62 聚集体的清除
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作者:Broadbent David G, McEwan Colten M, Jayatunge Dasun, Kaminsky Emily G, Tsang Tsz-Min, Poole Daniel M, Naylor Bradley C, Price John C, Schmidt Jens C, Andersen Josh L
| 期刊: | Molecular Biology of the Cell | 影响因子: | 2.700 |
| 时间: | 2025 | 起止号: | 2025 Feb 1; 36(2):ar20 |
| doi: | 10.1091/mbc.E24-03-0101 | 研究方向: | 表观遗传 |
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