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High phosphate induces skeletal muscle atrophy and suppresses myogenic differentiation by increasing oxidative stress and activating Nrf2 signaling

机译:高磷酸盐诱导骨骼肌萎缩通过增加氧化应激和激活NRF2信号传导来抑制糜源性分化

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摘要

Skeletal muscle wasting represents both a common phenotype of aging and a feature of pathological conditions such as chronic kidney disease (CKD). Although both clinical data and genetic experiments in mice suggest that hyperphosphatemia accelerates muscle wasting, the underlying mechanism remains unclear. Here, we showed that inorganic phosphate (Pi) dose-dependently decreases myotube size, fusion index, and myogenin expression in mouse C2C12 skeletal muscle cells. These changes were accompanied by increases in reactive oxygen species (ROS) production and Nrf2 and p62 expression, and reductions in mitochondrial membrane potential (MMP) and Keap1 expression. Inhibition of Pi entry, cytosolic ROS production, or Nrf2 activation reversed the effects of high Pi on Nrf2, p62, and myogenin expression. Overexpression of Nrf2 respectively increased and decreased the promoter activity of p62-Luc and myogenin-Luc reporters. Analysis of nuclear extracts from gastrocnemius muscles from mice fed a high-Pi (2% Pi) diet showed increased Nrf2 phosphorylation in sham-operated and 5/6 nephrectomized (CKD) mice, and both increased p62 phosphorylation and decreased myogenin expression in CKD mice. These data suggest that high Pi suppresses myogenic differentiation in vitro and promotes muscle atrophy in vivo through oxidative stress-mediated protein degradation and both canonical (ROS-mediated) and non-canonical (p62-mediated) activation of Nrf2 signaling.
机译:骨骼肌浪费代表衰老的常见表型和病理条件的特征,如慢性肾病(CKD)。虽然小鼠的临床数据和遗传实验都表明高磷血症加速肌肉浪费,但下面的机制仍然不清楚。在这里,我们表明,在小鼠C2C12骨骼肌细胞中,无机磷酸剂(PI)剂量依赖性降低了肌肌管尺寸,融合指数和肌原素的表达。这些变化伴随着反应性氧物质(ROS)生产和NRF2和P62表达的增加,并降低了线粒体膜电位(MMP)和Keap1表达。抑制PI入口,细胞溶质ROS生产,或NRF2活化呈现高PI对NRF2,P62和肌原素表达的影响。 NRF2的过表达分别增加和降低了P62-LUC和Myogenin-Luc记者的启动子活性。从喂养高pi(2%pi)饮食的小鼠的胃肠肌肌肉核提取物分析,显示出在假手术和5/6肾切除(CKD)小鼠中增加的NRF2磷酸化,并且均增加P62磷酸化并降低CKD小鼠中的肌原素表达。 。这些数据表明,高PI在体外抑制肌遗传分化,并通过氧化应激介导的蛋白质降解和典型(ROS介导)和非规范(P62介导)活化的NRF2信号传导的肌肉萎缩。

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