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Muscle mitohormesis promotes longevity via systemic repression of insulin signaling

机译:肌肉线粒体激素通过系统性抑制胰岛素信号传导促进长寿

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摘要

Mitochondrial dysfunction is usually associated with aging. To systematically characterize the compensatory stress signaling cascades triggered in response to muscle mitochondrial perturbation, we analyzed a Drosophila model of muscle mitochondrial injury. We find that mild muscle mitochondrial distress preserves mitochondrial function, impedes the age-dependent deterioration of muscle function and architecture, and prolongs lifespan. Strikingly, this effect is mediated by at least two prolongevity compensatory signaling modules: one involving a muscle-restricted redox-dependent induction of genes that regulate the mitochondrial unfolded protein response (UPR~(mt)) and another involving the transcriptional induction of the Drosophila ortholog of insulin-like growth factor-binding protein 7, which systemically antagonizes insulin signaling and facilitates mitophagy. Given that several secreted IGF-binding proteins (IGFBPs) exist in mammals, our work raises the possibility that muscle mitochondrial injury in humans may similarly result in the secretion of IGFBPs, with important ramifications for diseases associated with aberrant insulin signaling.
机译:线粒体功能障碍通常与衰老有关。为了系统地表征响应肌肉线粒体微扰而触发的代偿性压力信号传导级联,我们分析了果蝇肌肉线粒体损伤的模型。我们发现轻度的肌肉线粒体窘迫保留了线粒体功能,阻止了肌肉功能和结构的年龄依赖性恶化,并延长了寿命。引人注目的是,该效应至少由两个延长补偿信号模块介导:一个涉及调节线粒体未折叠蛋白应答(UPR〜(mt))的基因的肌肉限制性氧化还原依赖性诱导,另一个涉及果蝇的转录诱导。胰岛素样生长因子结合蛋白7的直系同源物,其系统拮抗胰岛素信号传导并促进线粒体吞噬。鉴于哺乳动物中存在几种分泌的IGF结合蛋白(IGFBP),我们的工作提出了人类的线粒体肌肉损伤可能类似地导致IGFBP分泌的可能性,并对与异常胰岛素信号转导相关的疾病产生了重要影响。

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