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首页> 外文期刊>Journal of cellular physiology. >Mitophagy reporter mouse analysis reveals increased mitophagy activity in disuse-induced muscle atrophy
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Mitophagy reporter mouse analysis reveals increased mitophagy activity in disuse-induced muscle atrophy

机译:Mitophagy记者鼠标分析显示因mitophagy活动增加肌肉萎缩

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Muscle disuse induces atrophy through increased reactive oxygen species (ROS) released from damaged mitochondria. Mitophagy, the autophagic degradation of mitochondria, is associated with increased ROS production. However, the mitophagy activity status during disuse-induced muscle atrophy has been a subject of debate. Here, we developed a new mitophagy reporter mouse line to examine how disuse affected mitophagy activity in skeletal muscles. Mice expressing tandem mCherry-EGFP proteins on mitochondria were then used to monitor the dynamics of mitophagy activity. The reporter mice demonstrated enhanced mitophagy activity and increased ROS production in atrophic soleus muscles following a 14-day hin-dlimb immobilization. Results also showed an increased expression of multiple mitophagy genes, including Bnip3, Bnip3l, and Park2. Our findings thus conclude that disuse enhances mitophagy activity and ROS production in atrophic skeletal muscles and suggests that mitophagy is a potential therapeutic target for disuse-induced muscle atrophy.
机译:通过增加肌肉停止使用导致萎缩活性氧(ROS)释放受损的线粒体。线粒体退化,是相关联的ROS增加生产。在因肌肉活动状态萎缩已经成为争论的话题。开发了一种新的mitophagy记者鼠标线检查停止使用如何影响mitophagy活动骨骼肌。mCherry-EGFP线粒体蛋白质用于监控mitophagy的动力活动。mitophagy活动和ROS增加生产在14天之后出现的萎缩比目鱼肌的肌肉hin-dlimb固定。增加了多个mitophagy基因的表达,包括Bnip3 Bnip3l, Park2。因此得出结论,停止使用增强mitophagy在萎缩性骨活动和ROS生产肌肉和表明mitophagy是一种因潜在的治疗目标肌肉萎缩。

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