泛素
生物
细胞生物学
肌动蛋白
AAA蛋白
细胞器
蛋白质组
肌动蛋白细胞骨架
神经退行性变
ATP酶
细胞骨架
生物化学
细胞
基因
酶
医学
病理
疾病
作者
Bojana Kravić,Tihana Bionda,Alexander Siebert,Pinki Gahlot,Sophie Levantovsky,Christian Münz,Hemmo Meyer
出处
期刊:Molecular Cell
[Elsevier]
日期:2022-07-01
卷期号:82 (14): 2633-2649.e7
被引量:7
标识
DOI:10.1016/j.molcel.2022.06.012
摘要
•The ubiquitylated proteome on damaged lysosomes is highly complex and dynamic •Diverse ubiquitylated regulators are identified including actin stabilizer CNN2 •CNN2 regulates F-actin to drive phagophore formation •Ubiquitylated CNN2 needs to be removed by VCP/p97 and HSPB1 for efficient lysophagy Lysosomal membrane permeabilization (LMP) is an underlying feature of diverse conditions including neurodegeneration. Cells respond by extensive ubiquitylation of membrane-associated proteins for clearance of the organelle through lysophagy that is facilitated by the ubiquitin-directed AAA-ATPase VCP/p97. Here, we assessed the ubiquitylated proteome upon acute LMP and uncovered a large diversity of targets and lysophagy regulators. They include calponin-2 (CNN2) that, along with the Arp2/3 complex, translocates to damaged lysosomes and regulates actin filaments to drive phagophore formation. Importantly, CNN2 needs to be ubiquitylated during the process and removed by VCP/p97 for efficient lysophagy. Moreover, we identified the small heat shock protein HSPB1 that assists VCP/p97 in the extraction of CNN2 and show that other membrane regulators including SNAREs, PICALM, AGFG1, and ARL8B are ubiquitylated during lysophagy. Our data reveal a framework of how ubiquitylation and two effectors, VCP/p97 and HSPB1, cooperate to protect cells from the deleterious effects of LMP. Lysosomal membrane permeabilization (LMP) is an underlying feature of diverse conditions including neurodegeneration. Cells respond by extensive ubiquitylation of membrane-associated proteins for clearance of the organelle through lysophagy that is facilitated by the ubiquitin-directed AAA-ATPase VCP/p97. Here, we assessed the ubiquitylated proteome upon acute LMP and uncovered a large diversity of targets and lysophagy regulators. They include calponin-2 (CNN2) that, along with the Arp2/3 complex, translocates to damaged lysosomes and regulates actin filaments to drive phagophore formation. Importantly, CNN2 needs to be ubiquitylated during the process and removed by VCP/p97 for efficient lysophagy. Moreover, we identified the small heat shock protein HSPB1 that assists VCP/p97 in the extraction of CNN2 and show that other membrane regulators including SNAREs, PICALM, AGFG1, and ARL8B are ubiquitylated during lysophagy. Our data reveal a framework of how ubiquitylation and two effectors, VCP/p97 and HSPB1, cooperate to protect cells from the deleterious effects of LMP.
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