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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Glutathione deficiency alters the vitamin D-metabolizing enzymes CYP27B1 and CYP24A1 in human renal proximal tubule epithelial cells and kidney of HFD-fed mice
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Glutathione deficiency alters the vitamin D-metabolizing enzymes CYP27B1 and CYP24A1 in human renal proximal tubule epithelial cells and kidney of HFD-fed mice

机译:谷胱甘肽缺陷在人肾近端小管上皮细胞和HFD喂养小鼠的肾脏中改变维生素D-代谢酶CYP27B1和CYP24A1

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摘要

Chronic kidney disease (CKD) is a worldwide public health problem with an estimated prevalence of 8.2%. This study reports glutathione deficiency, excess oxidative stress, and altered vitamin D metabolism in the kidney of mice fed a high-fat diet (HFD). The levels of GCLC and GCLM gene expression were significantly downregulated and the protein carbonylation level, a hallmark of oxidative damage, was significantly increased in the kidney of HFD-fed mice. While the levels of VD-regulatory genes 1-alpha-hydroxylase (CYP27B1), VDR, and RXR alpha were significantly downregulated in the kidney of mice fed a HFD, those of 24-hydroxylase (CYP24A1) were significantly elevated. In vitro, GSH deficiency per se causes excess oxidative damage (protein carbonylation), and significantly decreases the levels of VD-regulatory genes (CYP27B1, VDR, and RXR alpha), but increases levels of CYP24A1 in human renal proximal tubule epithelial cells (RPTEC), similar to findings in the kidney of HFD-fed diabetic mice. L-cysteine supplementation restores GSH and prevents oxidative damage in RPTEC. These studies suggest a potential role of GSH precursor in reducing excess oxidative stress and renal injury that commonly accompanies obesity/diabetes.
机译:慢性肾病(CKD)是全球公共卫生问题,估计患病率为8.2%。本研究报告了谷胱甘肽缺乏,过多的氧化应激和喂养高脂饮食(HFD)的小鼠肾脏中的维生素D代谢。 GCLC和GCLM基因表达的水平显着下调,蛋白质羰基化水平,氧化损伤的标志,在HFD喂养小鼠的肾脏中显着增加。虽然在喂养HFD的小鼠的小鼠的肾脏中显着下调VD-incormatory基因1-α-羟化酶(CYP27B1),VDR和RXRα的水平,但是24-羟化酶(CYP24A1)的肾脏显着下调。体外,GSH缺乏本身会导致过量的氧化损伤(蛋白质羰基化),并且显着降低VD-Coventatory基因的水平(CYP27B1,VDR和RXRα),但增加人肾近端小管上皮细胞中的CYP24A1水平(RPTEC ),类似于HFD喂养糖尿病小鼠肾脏的结果。 L-半胱氨酸补充恢复GSH并防止RPTEC中的氧化损伤。这些研究表明GSH前体在降低过度氧化应激和肾损伤的潜在作用,通常伴随着肥胖症/糖尿病。

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