Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California San Diego, 9500 Gilman Drive 0758, La Jolla, California 92093, USA.
Center for Research in Biological Systems, National Center for Microscopy and Imaging Research, University of California San Diego, La Jolla, California 92093, USA.
Nat Commun. 2017 Jan 30;8:14050. doi: 10.1038/ncomms14050.
Damaged mitochondria pose a lethal threat to cells that necessitates their prompt removal. The currently recognized mechanism for disposal of mitochondria is autophagy, where damaged organelles are marked for disposal via ubiquitylation by Parkin. Here we report a novel pathway for mitochondrial elimination, in which these organelles undergo Parkin-dependent sequestration into Rab5-positive early endosomes via the ESCRT machinery. Following maturation, these endosomes deliver mitochondria to lysosomes for degradation. Although this endosomal pathway is activated by stressors that also activate mitochondrial autophagy, endosomal-mediated mitochondrial clearance is initiated before autophagy. The autophagy protein Beclin1 regulates activation of Rab5 and endosomal-mediated degradation of mitochondria, suggesting cross-talk between these two pathways. Abrogation of Rab5 function and the endosomal pathway results in the accumulation of stressed mitochondria and increases susceptibility to cell death in embryonic fibroblasts and cardiac myocytes. These data reveal a new mechanism for mitochondrial quality control mediated by Rab5 and early endosomes.
受损的线粒体对细胞构成致命威胁,因此需要及时清除。目前公认的线粒体清除机制是自噬,在此过程中,受损细胞器通过 Parkin 介导的泛素化被标记为待处理。在此,我们报告了一种新的线粒体消除途径,在此途径中,这些细胞器通过 ESCRT 机制发生 Parkin 依赖性隔离,进入 Rab5 阳性早期内体。成熟后,这些内体将线粒体递送至溶酶体进行降解。尽管该内体途径被应激激活,但在自噬之前就开始了内体介导的线粒体清除。自噬蛋白 Beclin1 调节 Rab5 的激活和内体介导的线粒体降解,提示这两条途径之间存在串扰。Rab5 功能和内体途径的阻断会导致应激线粒体的积累,并增加胚胎成纤维细胞和心肌细胞对细胞死亡的敏感性。这些数据揭示了由 Rab5 和早期内体介导的新的线粒体质量控制机制。