Laboratory of Cancer Biology; Institute of Clinical Science; Sir Run Run Shaw Hospital; School of Medicine; Zhejiang University; Hangzhou, Zhejiang China; Department of Medical Oncology; Sir Run Run Shaw Hospital; School of Medicine; Zhejiang University; Hangzhou; Zhejiang China.
Autophagy. 2013 Nov 1;9(11):1720-36. doi: 10.4161/auto.26550. Epub 2013 Sep 26.
Beyond its role in recycling intracellular components nonselectively to sustain survival in response to metabolic stresses, autophagy can also selectively degrade specific cargoes such as damaged or dysfunctional organelles to maintain cellular homeostasis. Mitochondria, known as the power plant of cells, are the critical and dynamic organelles playing a fundamental role in cellular metabolism. Mitophagy, the selective autophagic elimination of mitochondria, has been identified both in yeast and in mammalian cells. Moreover, defects in mitophagy may contribute to a variety of human disorders such as neurodegeneration and myopathies. However, the role of mitophagy in development and cancer remains largely unclear. In this review, we summarize our current knowledge of the regulation and function of mitophagy in development and cancer.
除了在代谢应激下通过非选择性地回收细胞内成分来维持生存中发挥作用外,自噬还可以选择性地降解特定的货物,如受损或功能失调的细胞器,以维持细胞内平衡。线粒体被称为细胞的“动力工厂”,是在细胞代谢中起着基础性作用的关键和动态细胞器。自噬体选择性地消除线粒体,这一现象不仅在酵母中,也在哺乳动物细胞中得到了鉴定。此外,自噬缺陷可能导致多种人类疾病,如神经退行性疾病和肌肉疾病。然而,自噬在发育和癌症中的作用在很大程度上仍不清楚。在这篇综述中,我们总结了我们目前对自噬在发育和癌症中的调控和功能的认识。