Center for Molecular Medicine, University Medical Center Utrecht, Institute of Biomembranes, Utrecht University, 3584 CX Utrecht, The Netherlands.
Mol Biol Cell. 2024 Mar 1;35(3):ar40. doi: 10.1091/mbc.E23-08-0328. Epub 2024 Jan 10.
The multisubunit HOPS tethering complex is a well-established regulator of lysosome fusion with late endosomes and autophagosomes. However, the role of the HOPS complex in other stages of endo-lysosomal trafficking is not well understood. To address this, we made HeLa cells knocked out for the HOPS-specific subunits Vps39 or Vps41, or the HOPS-CORVET-core subunits Vps18 or Vps11. In all four knockout cells, we found that endocytosed cargos were trapped in enlarged endosomes that clustered in the perinuclear area. By correlative light-electron microscopy, these endosomes showed a complex ultrastructure and hybrid molecular composition, displaying markers for early (Rab5, PtdIns3P, EEA1) as well as late (Rab7, CD63, LAMP1) endosomes. These "HOPS bodies" were not acidified, contained enzymatically inactive cathepsins and accumulated endocytosed cargo and cation-independent mannose-6-phosphate receptor (CI-MPR). Consequently, CI-MPR was depleted from the TGN, and secretion of lysosomal enzymes to the extracellular space was enhanced. Strikingly, HOPS bodies also contained the autophagy proteins p62 and LC3, defining them as amphisomes. Together, these findings show that depletion of the lysosomal HOPS complex has a profound impact on the functional organization of the entire endosomal system and suggest the existence of a HOPS-independent mechanism for amphisome formation.
多亚基 HOPS tethering 复合物是溶酶体与晚期内体和自噬体融合的一个成熟调节剂。然而,HOPS 复合物在其他内体-溶酶体运输阶段的作用尚不清楚。为了解决这个问题,我们敲除了 HeLa 细胞中的 HOPS 特异性亚基 Vps39 或 Vps41,或 HOPS-CORVET-核心亚基 Vps18 或 Vps11。在所有四个敲除细胞中,我们发现内吞的货物被捕获在扩大的内体中,这些内体聚集在核周区域。通过相关的光-电子显微镜,这些内体显示出复杂的超微结构和混合的分子组成,显示出早期(Rab5、PtdIns3P、EEA1)和晚期(Rab7、CD63、LAMP1)内体的标志物。这些“HOPS 体”没有酸化,包含酶失活的组织蛋白酶和积累的内吞货物和阳离子非依赖性甘露糖-6-磷酸受体(CI-MPR)。因此,CI-MPR 从 TGN 中耗尽,溶酶体酶分泌到细胞外空间增强。引人注目的是,HOPS 体还包含自噬蛋白 p62 和 LC3,将其定义为两性体。总之,这些发现表明,溶酶体 HOPS 复合物的耗竭对整个内体系统的功能组织有深远的影响,并表明存在一种不依赖 HOPS 的两性体形成机制。