Hughes Adam L, Hughes Casey E, Henderson Kiersten A, Yazvenko Nina, Gottschling Daniel E
Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, United States.
Department of Biochemistry, University of Utah School of Medicine, Salt Lake City, United States.
Elife. 2016 Apr 20;5:e13943. doi: 10.7554/eLife.13943.
Mitochondrial dysfunction is a hallmark of aging, and underlies the development of many diseases. Cells maintain mitochondrial homeostasis through a number of pathways that remodel the mitochondrial proteome or alter mitochondrial content during times of stress or metabolic adaptation. Here, using yeast as a model system, we identify a new mitochondrial degradation system that remodels the mitochondrial proteome of aged cells. Unlike many common mitochondrial degradation pathways, this system selectively removes a subset of membrane proteins from the mitochondrial inner and outer membranes, while leaving the remainder of the organelle intact. Selective removal of preexisting proteins is achieved by sorting into a mitochondrial-derived compartment, or MDC, followed by release through mitochondrial fission and elimination by autophagy. Formation of MDCs requires the import receptors Tom70/71, and failure to form these structures exacerbates preexisting mitochondrial dysfunction, suggesting that the MDC pathway provides protection to mitochondria in times of stress.
线粒体功能障碍是衰老的一个标志,也是许多疾病发生发展的基础。细胞通过多种途径维持线粒体稳态,这些途径在应激或代谢适应期间重塑线粒体蛋白质组或改变线粒体含量。在这里,我们以酵母为模型系统,鉴定出一种新的线粒体降解系统,该系统可重塑衰老细胞的线粒体蛋白质组。与许多常见的线粒体降解途径不同,该系统选择性地从线粒体内外膜中去除一部分膜蛋白,而细胞器的其余部分保持完整。通过分选到线粒体衍生区室(MDC)中,然后通过线粒体分裂释放并通过自噬消除,实现对预先存在的蛋白质的选择性去除。MDC的形成需要导入受体Tom70/71,未能形成这些结构会加剧预先存在的线粒体功能障碍,这表明MDC途径在应激时为线粒体提供保护。