Faculty of Biology, Centre for Medical Biotechnology, University of Duisburg-Essen, Essen, Germany.
Cell Death and Metabolism Unit, Center for Autophagy, Recycling and Disease, Danish Cancer Society Research Center, Copenhagen, Denmark.
EMBO Rep. 2019 Oct 4;20(10):e48014. doi: 10.15252/embr.201948014. Epub 2019 Aug 21.
The autophagic clearance of damaged lysosomes by lysophagy involves extensive modification of the organelle with ubiquitin, but the underlying ubiquitination machinery is still poorly characterized. Here, we use an siRNA screening approach and identify human UBE2QL1 as a major regulator of lysosomal ubiquitination, lysophagy, and cell survival after lysosomal damage. UBE2QL1 translocates to permeabilized lysosomes where it associates with damage sensors, ubiquitination targets, and lysophagy effectors. UBE2QL1 knockdown reduces ubiquitination and accumulation of the critical autophagy receptor p62 and abrogates recruitment of the AAA-ATPase VCP/p97, which is essential for efficient lysophagy. Crucially, it affects association of LC3B with damaged lysosomes indicating that autophagosome formation was impaired. Already in unchallenged cells, depletion of UBE2QL1 leads to increased lysosomal damage, mTOR dissociation from lysosomes, and TFEB activation pointing to a role in lysosomal homeostasis. In line with this, mutation of the homologue ubc-25 in Caenorhabditis elegans exacerbates lysosome permeability in worms lacking the lysosome stabilizing protein SCAV-3/LIMP2. Thus, UBE2QL1 coordinates critical steps in the acute endolysosomal damage response and is essential for maintenance of lysosomal integrity.
溶酶体自噬通过溶酶体吞噬作用清除受损的溶酶体,涉及到溶酶体的泛素化修饰,但潜在的泛素化机制仍知之甚少。在这里,我们使用 siRNA 筛选方法,鉴定出人源 UBE2QL1 是溶酶体泛素化、溶酶体吞噬作用以及溶酶体损伤后细胞存活的主要调节因子。UBE2QL1 易位到通透的溶酶体,在那里它与损伤传感器、泛素化靶标和溶酶体吞噬作用效应物结合。UBE2QL1 的敲低减少了关键自噬受体 p62 的泛素化和积累,并阻断了 AAA-ATPase VCP/p97 的募集,这对于有效的溶酶体吞噬作用是必不可少的。至关重要的是,它影响 LC3B 与受损溶酶体的结合,表明自噬体的形成受到了损害。即使在未受到挑战的细胞中,UBE2QL1 的耗竭也会导致溶酶体损伤增加、mTOR 从溶酶体解离以及 TFEB 激活,表明其在溶酶体稳态中发挥作用。与此一致的是,在缺乏溶酶体稳定蛋白 SCAV-3/LIMP2 的线虫中,Caenorhabditis elegans 同源物 ubc-25 的突变会加剧溶酶体通透性。因此,UBE2QL1 协调急性内溶酶体损伤反应中的关键步骤,是维持溶酶体完整性所必需的。