Canonical autophagy captures within specialized double-membrane organelles, termed autophagosomes, an array of cytoplasmic components destined for lysosomal degradation. An autophagosome is completed when the growing phagophore undergoes ESCRT-dependent membrane closure, a prerequisite for its subsequent fusion with endolysosomal organelles and degradation of the sequestered cargo. ATG9A, a key integral membrane protein of the autophagy pathway, is best known for its role in the formation and expansion of phagophores. Here, we report a hitherto unappreciated function of mammalian ATG9A in directing autophagosome closure. ATG9A partners with IQGAP1 and key ESCRT-III component CHMP2A to facilitate this final stage in autophagosome formation. Thus, ATG9A is a central hub governing all major aspects of autophagosome membrane biogenesis, from phagophore formation to its closure, and is a unique ATG factor with progressive functionalities affecting the physiological outputs of autophagy.
ATG9A facilitates the closure of mammalian autophagosomes.
ATG9A促进哺乳动物自噬体的闭合
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作者:Javed Ruheena, Mari Muriel, Trosdal Einar, Duque Thabata, Paddar Masroor Ahmad, Allers Lee, Mudd Michal H, Claude-Taupin Aurore, Akepati Prithvi Reddy, Hendrix Emily, He Yi, Salemi Michelle, Phinney Brett, Uchiyama Yasuo, Reggiori Fulvio, Deretic Vojo
| 期刊: | Journal of Cell Biology | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 Feb 3; 224(2):e202404047 |
| doi: | 10.1083/jcb.202404047 | 研究方向: | 其它 |
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