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Mitochondrial quality control promoted by PGC-1α is dysregulated by Western diet-induced obesity and partially restored by moderate physical activity in mice

机译:由PGC-1α促进的线粒体质量控制受到西方饮食诱导的肥胖症的失调控制并通过中等程度的体育锻炼部分恢复

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摘要

Skeletal muscle mitochondrial degeneration is a hallmark of insulin resistance/obesity marked by lost function, enhanced ROS emission, and altered morphology which may be ameliorated by physical activity (PA). However, no prior report has examined mitochondrial quality control regulation throughout biogenesis, fusion/fission dynamics, autophagy, and mitochondrial permeability transition pore (MPTP) in obesity. Therefore, we determined how each process is impacted by Western diet (WD)-induced obesity and whether voluntary PA may alleviate derangements in mitochondrial quality control mechanisms. Despite greater mitochondrial content following WD (COX-IV and Cytochrome C), induction of biogenesis controllers appears impaired (failed induction of PGC-1α). Mitochondrial fusion seems diminished (reduced MFN2, Opa1 proteins), with no significant changes in fission, suggesting a shift in balance of dynamics regulation favoring fission. Autophagy flux was promoted in WD (reduced p62, increased LC3II:I ratio); however, mitophagy marker BNIP3 is reduced in WD which may indicate reduced mitophagy despite enhanced total autophagy flux. MPTP regulator Ant mRNA is reduced by WD. Few processes were impacted by physical activity. Finally, mitochondrial quality control processes are partially promoted by PGC-1α, as PGC-1α transgenic mice display elevated mitochondrial biogenesis and autophagy flux. Additionally, these mice exhibit elevated Mfn1 and Opa1 mRNA, with no change in protein content suggesting these factors are transcriptionally promoted by PGC-1α overexpression. These data demonstrate dysfunctions across mitochondrial quality control in obesity and that PGC-1α is sufficient to promote multiple, but not necessarily all, aspects of mitochondrial quality control. Mitochondrial quality control may therefore be an opportune target to therapeutically treat metabolic disease.
机译:骨骼肌线粒体变性是胰岛素抵抗/肥胖症的标志,其特征在于功能丧失,ROS释放增强和形态改变(可通过体育锻炼(PA)改善)。但是,在肥胖症的整个生物发生,融合/裂变动力学,自噬和线粒体通透性转换孔(MPTP)中,没有先前的报告检查过线粒体质量控制调控。因此,我们确定了西方饮食(WD)引起的肥胖如何影响每个过程以及自愿性PA是否可以缓解线粒体质量控制机制中的紊乱。尽管WD后线粒体含量增加(COX-IV和细胞色素C),但生物发生控制器的诱导似乎受到了损害(PGC-1α的诱导失败)。线粒体融合似乎减少了(MFN2,Opa1蛋白减少),裂变没有明显变化,这表明有利于裂变的动力学调节平衡发生了变化。 WD促进自噬通量(减少p62,增加LC3II:I比);然而,WD中线粒体标记BNIP3减少,尽管总自噬通量增加,这可能表明线粒体减少。 WD降低了MPTP调节剂Ant mRNA的表达。很少有过程受到身体活动的影响。最后,PGC-1α转基因小鼠显示出提高的线粒体生物发生能力和自噬通量,因此PGC-1α部分促进了线粒体质量控制过程。此外,这些小鼠的Mfn1和Opa1 mRNA升高,蛋白质含量没有变化,表明这些因子在PGC-1α的过表达中被转录促进。这些数据证明了肥胖中跨线粒体质量控制的功能障碍,PGC-1α足以促进线粒体质量控制的多个方面,但不一定是所有方面。因此,线粒体质量控制可能是治疗性代谢疾病的合适靶标。

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