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首页> 外文期刊>Cell metabolism >Loss of cytochrome c oxidase promotes ras-dependent ros production from the er resident nadph oxidase, yno1p, in yeast
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Loss of cytochrome c oxidase promotes ras-dependent ros production from the er resident nadph oxidase, yno1p, in yeast

机译:细胞色素C氧化酶的损失促进酵母中驻留的nadph氧化酶yno1p产生ras依赖的ros

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摘要

Many disease states, including the aging process, are associated with the accumulation of mitochondria harboring respiratory dysfunction. Mitochondrial dysfunction is often accompanied by increased ROS levels that can contribute to cellular dysfunction and disease etiology. Here we use the model eukaryote S. cerevisiae to investigate whether reduced cytochrome c oxidase (COX) activity, commonly reported in aging organisms and associated with neurodegenerative disorders, leads to ROS production from mitochondria. We provide evidence that although reduced COX complex activity correlates with ROS accumulation, mitochondria are not the major production center. Instead we show that COX-deficient mitochondria activate Ras upon their outer membrane that establishes a pro-ROS accumulation environment by suppressing antioxidant defenses and the ERAD-mediated turnover of the ER-localized NADPH oxidase Yno1p. Our data suggest that dysfunctional mitochondria can serve as a signaling platform to promote the loss of redox homeostasis, ROS accumulation, and accelerate aging in yeast.
机译:许多疾病状态,包括衰老过程,都与呼吸功能障碍的线粒体积累有关。线粒体功能障碍通常伴随着ROS水平升高,可能导致细胞功能障碍和疾病病因。在这里,我们使用真核生物酿酒酵母模型来调查是否减少的细胞色素C氧化酶(COX)活性(通常在衰老的生物体中报告并与神经退行性疾病有关)是否导致线粒体产生ROS。我们提供的证据表明,虽然COX复杂活性降低与ROS积累相关,但线粒体并不是主要的生产中心。相反,我们表明,COX缺乏的线粒体通过抑制抗氧化剂防御和ER定位的NADPH氧化酶Yno1p的ERAD介导的周转,在其外膜上激活Ras,从而建立pro-ROS积累环境。我们的数据表明,功能异常的线粒体可以充当信号传导平台,促进氧化还原稳态,ROS积累的丧失,并加速酵母的衰老。

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