Xie Yangchun, Liu Jiao, Kang Rui, Tang Daolin
Department of Oncology, The Second Xiangya Hospital, Central South University, Changsha, China.
The Third Affiliated Hospital, Guangzhou Medical University, Guangzhou, China.
Front Cell Dev Biol. 2020 Nov 11;8:594203. doi: 10.3389/fcell.2020.594203. eCollection 2020.
Mitochondria are multifunctional organelles that regulate cancer biology by synthesizing macromolecules, producing energy, and regulating cell death. The understanding of mitochondrial morphology, function, biogenesis, fission and fusion kinetics, and degradation is important for the development of new anticancer strategies. Mitophagy is a type of selective autophagy that can degrade damaged mitochondria under various environmental stresses, especially oxidative damage and hypoxia. The key regulator of mitophagy is the autophagy receptor, which recognizes damaged mitochondria and allows them to enter autophagosomes by binding to MAP1LC3 or GABARAP, and then undergo lysosomal-dependent degradation. Many components of mitochondria, including mitochondrial membrane proteins (e.g., PINK1, BNIP3L, BNIP3, FUNDC1, NIPSNAP1, NIPSNAP2, BCL2L13, PHB2, and FKBP8) and lipids (e.g., cardiolipin and ceramides), act as mitophagy receptors in a context-dependent manner. Dysfunctional mitophagy not only inhibits, but also promotes, tumorigenesis. Similarly, mitophagy plays a dual role in chemotherapy, radiotherapy, and immunotherapy. In this review, we summarize the latest advances in the mechanisms of mitophagy and highlight the pathological role of mitophagy receptors in tumorigenesis and treatment.
线粒体是多功能细胞器,通过合成大分子、产生能量和调节细胞死亡来调控癌症生物学。了解线粒体的形态、功能、生物发生、裂变和融合动力学以及降解对于开发新的抗癌策略至关重要。线粒体自噬是一种选择性自噬,在各种环境应激下,尤其是氧化损伤和缺氧时,可降解受损的线粒体。线粒体自噬的关键调节因子是自噬受体,它识别受损的线粒体,并通过与微管相关蛋白轻链3(MAP1LC3)或γ-氨基丁酸受体相关蛋白(GABARAP)结合,使它们进入自噬体,然后进行溶酶体依赖性降解。线粒体的许多成分,包括线粒体膜蛋白(如PINK1、BNIP3L、BNIP3、FUNDC1、NIPSNAP1、NIPSNAP2、BCL2L13、PHB2和FKBP8)和脂质(如心磷脂和神经酰胺),在特定情况下可作为线粒体自噬受体发挥作用。功能失调的线粒体自噬不仅会抑制肿瘤发生,还会促进肿瘤发生。同样,线粒体自噬在化疗、放疗和免疫治疗中也发挥着双重作用。在本综述中,我们总结了线粒体自噬机制的最新进展,并强调了线粒体自噬受体在肿瘤发生和治疗中的病理作用。