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首页> 外文期刊>Nature reviews Drug discovery >Glutathione peroxidase-1 overexpression reduces oxidative stress, and improves pathology and proteome remodeling in the kidneys of old mice
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Glutathione peroxidase-1 overexpression reduces oxidative stress, and improves pathology and proteome remodeling in the kidneys of old mice

机译:谷胱甘肽过氧化物酶-1过表达减少了氧化应激,并改善了老鼠肾脏的病理学和蛋白质组重新兴奋剂

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摘要

This study investigated the direct roles of hydrogen peroxide (H2O2) in kidney aging using transgenic mice overexpressing glutathione peroxidase-1 (GPX1 TG). We demonstrated that kidneys in old mice recapitulated kidneys in elderly humans and were characterized by glomerulosclerosis, tubular atrophy, interstitial fibrosis, and loss of cortical mass. Scavenging H2O2 by GPX1 TG significantly reduced mitochondrial and total cellular reactive oxygen species (ROS) and mitigated oxidative damage, thus improving these pathologies. The potential mechanisms by which ROS are increased in the aged kidney include a decreased abundance of an anti-aging hormone, Klotho, in kidney tissue, and decreased expression of nuclear respiratory factor 2 (Nrf2), a master regulator of the stress response. Decreased Klotho or Nrf2 was not improved in the kidneys of old GPX1 TG mice, even though mitochondrial morphology was better preserved. Using laser capture microdissection followed by label-free shotgun proteomics analysis, we show that the glomerular proteome in old mice was characterized by decreased abundance of cytoskeletal proteins (critical for maintaining normal glomerular function) and heat shock proteins, leading to increased accumulation of apolipoprotein E and inflammatory molecules. Targeted proteomic analysis of kidney tubules from old mice showed decreased abundance of fatty acid oxidation enzymes and antioxidant proteins, as well as increased abundance of glycolytic enzymes and molecular chaperones. GPX1 TG partially attenuated the remodeling of glomerular and tubule proteomes in aged kidneys. In summary, mitochondria from GPX1 TG mice are protected and kidney aging is ameliorated via its antioxidant activities, independent and downstream of Nrf2 or Klotho signaling.
机译:本研究研究了过表达谷胱甘肽过氧化物酶-1(GPX1 TG)的转基因小鼠的转基因小鼠肾老化氢过氧化氢(H2O2)的直接作用。我们证明,老鼠的肾脏在老年人中覆盖肾脏,其特征在于肾小球粥样硬化,管状萎缩,间质纤维化和皮质肿块丧失。通过GPX1 TG清除H2O2显着降低线粒体和总细胞反应性氧(ROS)和缓解氧化损伤,从而改善了这些病理学。 ROS在老年肾中增加的潜在机制包括降低丰富的抗衰老激素,Klotho,肾组织中,并且核呼吸系统2(NRF2)的表达降低,应力反应的母稳压器。在旧GPX1 TG小鼠的肾脏中,克罗托或NRF2降低,即使线粒体形态更好地保存。使用激光捕获微小术,然后是无标记的霰弹枪蛋白质组学分析,我们表明旧小鼠中的肾小球蛋白质组的特征在于降低细胞骨骼蛋白的丰富度(对维持正常肾小球功能的关键症)和热休克蛋白,导致载脂蛋白e的积累增加和炎症分子。来自旧小鼠的肾小珠的靶向蛋白质组学分析表明,脂肪酸氧化酶和抗氧化蛋白的丰度降低,以及增加的糖酵解酶和分子伴侣的丰度。 GPX1 TG部分抑制了老年肾脏中肾小球和小管蛋白质的重塑。总之,来自GPX1 TG小鼠的线粒体受到保护,并且通过其抗氧化活性,独立和下游来改善NRF2或Klotho信号传导的肾老化。

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