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Cell-autonomous and non-autonomous roles of daf-16 in muscle function and mitochondrial capacity in aging C. elegans

机译:daf-16在衰老线虫中的肌肉功能和线粒体容量中的细胞自主和非自主作用

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摘要

Sarcopenia, defined as the loss of skeletal muscle mass and strength, contributes to disability and health-related conditions with aging. In vitro studies indicate that age-related mitochondrial dysfunction could play a central role in the development and progression of sarcopenia, but because of limitations in the methods employed, how aging affects muscle mitochondrial function in vivo is not fully understood. We use muscle-targeted fluorescent proteins and the ratiometric ATP reporter, ATeam, to examine changes in muscle mitochondrial mass and morphology, and intracellular ATP levels in C. elegans. We find that the preserved muscle function in aging daf-2 mutants is associated with higher muscle mitochondrial mass, preserved mitochondrial morphology, and higher levels of intracellular ATP. These phenotypes require the daf-16/FOXO transcription factor. Via the tissue-specific rescue of daf-16, we find that daf-16 activity in either muscle or neurons is sufficient to enhance muscle mitochondrial mass, whereas daf-16 activity in the muscle is required for the enhanced muscle function and mobility of the daf-2 mutants. Finally, we show through the use of drugs known to enhance mitochondrial activity that augmenting mitochondrial function leads to improved mobility during aging. These results suggest an important role for mitochondrial function in muscle aging.
机译:肌肉减少症定义为骨骼肌质量和力量的丧失,会随着年龄的增长而导致残疾和与健康相关的状况。体外研究表明,与年龄相关的线粒体功能障碍可能在肌肉减少症的发生和发展中起着核心作用,但由于所用方法的局限性,衰老如何影响体内肌肉线粒体功能尚不完全清楚。我们使用针对肌肉的荧光蛋白和比例式ATP报道分子ATeam,来检查线粒体肌肉线粒体质量和形态以及细胞内ATP水平的变化。我们发现老化的daf-2突变体中保留的肌肉功能与较高的肌肉线粒体质量,保留的线粒体形态和较高的细胞内ATP水平相关。这些表型需要daf-16 / FOXO转录因子。通过daf-16的组织特异性拯救,我们发现肌肉或神经元中的daf-16活性足以增强肌肉线粒体质量,而肌肉中的daf-16活性是增强其功能和增强其运动性所必需的。 daf-2突变体。最后,我们通过使用已知增强线粒体活性的药物表明,增强线粒体功能可改善衰老过程中的活动性。这些结果表明线粒体功能在肌肉衰老中具有重要作用。

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