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首页> 外文期刊>Molecular Metabolism >Interplay between RNA-binding protein HuR and Nox4 as a novel therapeutic target in diabetic kidney disease
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Interplay between RNA-binding protein HuR and Nox4 as a novel therapeutic target in diabetic kidney disease

机译:RNA结合蛋白HUR和NOX4之间的相互作用作为糖尿病肾疾病的新型治疗靶标

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摘要

Objective Glomerular injury is a prominent pathological feature of diabetic kidney disease (DKD). Constitutively active NADPH oxidase 4 (Nox4) is a major source of reactive oxygen species that mediates hyperglycemia-induced mesangial cell (MC) fibrotic injury. However, the mechanism that Nox4 utilizes to achieve its biological outcome remains elusive, and the signaling pathways that regulate this isoform oxidase are not well understood. Here, our goal is to study the detailed mechanism by which NAPDH oxidase 4 (Nox4) is post-transcriptionally regulated in MC during diabetic pathology. Methods We studied the protein expression of HuR, Nox4 and matrix proteins by western blotting, while we assessed the mRNA stability of Nox4 by RT-PCR and polysomal assay, examined in?vitro cultured glomerular mesangial cells treated by high glucose (HG) and diabetic animal induced by STZ. The binding assay between HuR and the Nox4 promoter was done by immuno-precipiating with HuR antibody and detecting the presence of Nox4 mRNA, or by pull-down by using biotinlyated labeled Nox4 promoter RNA and detecting the presence of the HuR protein. The binding was also confirmed in MCs where Nox4 promoter-containing luciferage constructs were transfected. ROS levels were measured with DHE/DCF dyes in cells, or lucigenin chemiluminescence for Nox enzymatic levels, or HPLC assay for superoxide. HuR protein was inhibited by antisense oligo that utilized osmotic pumps for continuous delivery in animal models. The H1bAc1 ratio was measured by an ELISA kit for mice. Results We demonstrate that in MCs, high glucose (HG) elicits a rapid upregulation of Nox4 protein via translational mechanisms. Nox4 mRNA 3′ untranslated region (3′-UTR) contains numerous AU-rich elements (AREs) that are potential binding sites for the RNA-binding protein human antigen R (HuR). We show that HG promotes HuR activation/expression and that HuR is required for HG-induced Nox4 protein expression/mRNA translation, ROS generation, and subsequent MC fibrotic injury. Through a series of in vitro RNA-binding assays, we demonstrate that HuR acts via binding to AREs in Nox4 3′-UTR in response to HG. The in vivo relevance of these observations is confirmed by the findings that increased Nox4 is accompanied by the binding of HuR to Nox4 mRNA in kidneys from type 1 diabetic animals, and further suppressing HuR expression showed a reno-protective role in a type 1 diabetic mouse model via reducing MC injury, along with the improvement of hyperglycemia and renal function. Conclusions We established for the first time that HuR-mediated translational regulation of Nox4 contributes to the pathogenesis of fibrosis of the glomerular microvascular bed. Thus therapeutic interventions affecting the interplay between Nox4 and HuR could be exploited as valuable tools in designing treatments for DKD.
机译:目的肾小球损伤是糖尿病肾病(DKD)的突出病理特征。组成型活性NADPH氧化酶4(NOX4)是介导高血糖诱导的椎间囊细胞(MC)纤维化损伤的反应性氧物种的主要来源。然而,NOX4利用以实现其生物结果的机制仍然是难以捉摸的,并且调节这种同种型氧化酶的信号传导途径尚不清楚。在此,我们的目标是研究NAPDH氧化酶4(NOX4)在糖尿病病理学期间在MC中进行后调节的详细机制。方法通过Western印迹研究了Hur,Nox4和基质蛋白的蛋白表达,而我们通过高葡萄糖(Hg)和糖尿病患者的体外培养的肾小球乳细胞中,评估NOx4的MRNA稳定性。 STZ诱导的动物。 HUR和NOx4启动子之间的结合测定通过用Hur抗体免疫沉淀并通过使用生物膜形标记的NOx4启动子RNA检测NOx4 mRNA的存在并通过下拉并检测HUR蛋白的存在。还在MCS中证实了结合,其中转染NOx4启动子的荧光素构建体。用细胞中的DHE / DCF染料测量ROS水平,或用于NOx酶水平的Lucigenin化学发光,或用于超氧化物的HPLC测定。通过用于在动物模型中连续递送的反义寡核苷酸抑制了Hur蛋白。 H1BAC1的比例由ELISA试剂盒测量小鼠。结果我们证明,在MCS中,高葡萄糖(HG)通过平移机制引发NOX4蛋白的快速上调。 NOx4 mRNA 3'未转换区域(3'-UTR)含有许多富含Au的元素(Ares),其是RNA结合蛋白人抗原R(HUR)的潜在结合位点。我们表明HG促进了HUR激活/表达,并且HG诱导的NOX4蛋白表达/ mRNA翻译,rOS生成和随后的MC纤维化损伤需要HUR。通过一系列体外RNA结合测定,我们证明HUR通过与HG的NOX4 3'-UTR中的ARES结合。这些观察结果的体内相关性通过调查结果证实了NOX4的结果伴随着来自1型糖尿病动物的肾脏中的NOx4 mRNA的结合,并且进一步抑制HUR表达在1型糖尿病小鼠中表现出肾上保护作用通过减少MC损伤的模型,随着高血糖和肾功能的改善。结论我们第一次建立了血管介导的NOx4的翻译规则有助于肾小球微血管床的纤维化发病机制。因此,影响NOX4和HUR之间相互作用的治疗干预措施可以被利用为设计DKD治疗的宝贵工具。

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