线粒体
细胞生物学
氧化应激
胞浆
粒体自噬
信号转导
氧化磷酸化
生物
线粒体内膜
线粒体基质
活性氧
生物化学
化学
自噬
细胞凋亡
酶
作者
Li Li,Koya Lumbao-Conradson,Vinita Bharat,Min Joo Kim,Chung-Han Hsieh,Paras S. Minhas,Amanda M. Papakyrikos,Aarooran S. Durairaj,Anthony V. Ludlam,Katrin I. Andreasson,Linda Partridge,Michael A. Cianfrocco,Xinnan Wang
标识
DOI:10.1038/s42255-021-00443-2
摘要
Mitochondria are the main site for generating reactive oxygen species, which are key players in diverse biological processes. However, the molecular pathways of redox signal transduction from the matrix to the cytosol are poorly defined. Here we report an inside-out redox signal of mitochondria. Cysteine oxidation of MIC60, an inner mitochondrial membrane protein, triggers the formation of disulfide bonds and the physical association of MIC60 with Miro, an outer mitochondrial membrane protein. The oxidative structural change of this membrane-crossing complex ultimately elicits cellular responses that delay mitophagy, impair cellular respiration and cause oxidative stress. Blocking the MIC60–Miro interaction or reducing either protein, genetically or pharmacologically, extends lifespan and health-span of healthy fruit flies, and benefits multiple models of Parkinson’s disease and Friedreich’s ataxia. Our discovery provides a molecular basis for common treatment strategies against oxidative stress. Redox signal transduction from the mitochondrial matrix to the cytosol is shown to be mediated through interaction between MIC60 and Miro, the disruption of which ameliorates oxidative stress in Drosophila.
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