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首页> 外文期刊>Journal of cellular and molecular medicine. >LncRNA lnc-ISG20 promotes renal fibrosis in diabetic nephropathy by inducing AKT phosphorylation through miR-486-5p/NFAT5
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LncRNA lnc-ISG20 promotes renal fibrosis in diabetic nephropathy by inducing AKT phosphorylation through miR-486-5p/NFAT5

机译:LNCRNA LNC-ISG20通过MIR-486-5P / NFAT5诱导AKT磷酸化促进糖尿病肾病中的肾纤维化

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Long non-coding RNA (lncRNA) lnc-ISG20 has been found aberrantly up-regulated in the glomerular in the patients with diabetic nephropathy (DN). We aimed to elucidate the function and regulatory mechanism of lncRNA lnc-ISG20 on DN-induced renal fibrosis. Expression patterns of lnc-ISG20 in kidney tissues of DN patients were determined by RT-qPCR. Mouse models of DN were constructed, while MCs were cultured under normal glucose (NG)/high glucose (HG) conditions. The expression patterns of fibrosis marker proteins collagen IV, fibronectin and TGF-β1 were measured with Western blot assay. In addition, the relationship among lnc-ISG20, miR-486-5p, NFAT5 and AKT were analysed using dual-luciferase reporter assay and RNA immunoprecipitation. The effect of lnc-ISG20 and miR-486/NFAT5/p-AKT axis on DN-associated renal fibrosis was also verified by means of rescue experiments. The expression levels of lnc-ISG20 were increased in DN patients, DN mouse kidney tissues and HG-treated MCs. Lnc-ISG20 silencing alleviated HG-induced fibrosis in MCs and delayed renal fibrosis in DN mice. Mechanistically, miR-486-5p was found to be a downstream miRNA of lnc-ISG20, while miR-486-5p inhibited the expression of NFAT5 by binding to its 3'UTR. NFAT5 overexpression aggravated HG-induced fibrosis by stimulating AKT phosphorylation. However, NFAT5 silencing reversed the promotion of in vitro and in vivo fibrosis caused by lnc-ISG20 overexpression. Our collective findings indicate that lnc-ISG20 promotes the renal fibrosis process in DN by activating AKT through the miR-486-5p/NFAT5 axis. High-expression levels of lnc-ISG20 may be a useful indicator for DN.
机译:长期非编码RNA(LNCRNA)LNC-ISG20已被发现在糖尿病肾病患者(DN)中的肾小球中的异常上调。我们旨在阐明LNCRNA LNC-ISG20对DN诱导肾纤维化的功能和调节机制。通过RT-QPCR测定DN患者肾组织中LNC-ISG20的表达模式。构建DN的小鼠模型,而MCS在正常葡萄糖(NG)/高葡萄糖(HG)条件下培养。用蛋白质印迹测定法测定纤维化标记蛋白胶原蛋白IV,纤连蛋白和TGF-β1的表达模式。此外,使用双荧光素酶报告结果和RNA免疫沉淀分析LNC-ISG20,MIR-486-5P,NFAT5和AKT之间的关系。通过救援实验验证了LNC-ISG20和MIR-486 / NFAT5 / P-AKT轴对DN相关肾纤维化的影响。在DN患者中,LNC-ISG20的表达水平增加,DN小鼠肾组织和HG处理的MCS。 LNC-ISG20在DN小鼠中缓解了MCS中的HG诱导的纤维化和延迟肾纤维化。机械地,发现miR-486-5p是LNC-ISG20的下游miRNA,而MiR-486-5P通过与其3'UTR结合而抑制NFAT5的表达。 NFAT5过表达通过刺激AKT磷酸化来加剧HG诱导的纤维化。然而,NFAT5沉默逆转促进体外和体内纤维化引起的LNC-ISG20过表达引起的。我们的集体调查结果表明,通过MIR-486-5P / NFAT5轴激活AKT,LNC-ISG20促进DN中的肾纤维化过程。 LNC-ISG20的高表达水平可以是DN的有用指标。

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