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Intermedin inhibits unilateral ureteral obstruction-induced oxidative stress via NADPH oxidase Nox4 and cAMP-dependent mechanisms

机译:Intermedin通过NADPH氧化酶Nox4和cAMP依赖性机制抑制单侧输尿管阻塞引起的氧化应激

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摘要

NADPH oxidase Nox4-derived reactive oxygen species (ROS) play important roles in renal fibrosis. Our previous study demonstrated that intermedin (IMD) alleviated unilateral ureteral obstruction (UUO)-induced renal fibrosis by inhibition of ROS. However, the precise mechanisms remain unclear. Herein, we investigated the effect of IMD on Nox4 expression and NADPH oxidase activity in rat UUO model, and explored if these effect were achieved through cAMP-PKA pathway, the important post-receptor signal transduction pathway of IMD, in TGF-β1-stimulated rat proximal tubular cell (NRK-52E). Renal fibrosis was induced by UUO. NRK-52E was exposed to rhTGF-β1 to establish an in vitro model of fibrosis. IMD was overexpressed in the kidney and in NRK-52E by IMD gene transfer. We studied UUO-induced ROS by measuring dihydroethidium levels and lipid peroxidation end-product 4-hydroxynonenal expression. Nox4 expression in the obstructed kidney of UUO rat or in TGF-β1-stimulated NRK-52E was measured by quantitative RT-PCR and Western blotting. We analyzed NADPH oxidase activity using a lucigenin-enhanced chemiluminescence system. We showed that UUO-stimulated ROS production was remarkably attenuated by IMD gene transfer. IMD overexpression inhibited UUO-induced up-regulation of Nox4 and activation of NADPH oxidase. Consistent with in vivo results, TGF-β1-stimulated increase in Nox4 expression and NADPH oxidase activity was blocked by IMD. In NRK-52E, these beneficial effects of IMD were abolished by pretreatment with N-[2-(p-bromocinnamylamino)ethyl]-5-isoquinolinesulfonamide hydrochloride (H-89), a PKA inhibitor, and mimicked by a cell-permeable cAMP analog dibutyl-cAMP. Our results indicate that IMD exerts anti-oxidant effects by inhibition of Nox4, and the effect can be mediated by cAMP-PKA pathway.
机译:NADPH氧化酶Nox4衍生的活性氧(ROS)在肾纤维化中起重要作用。我们先前的研究表明,间质素(IMD)通过抑制ROS缓解了单侧输尿管阻塞(UUO)引起的肾纤维化。但是,确切的机制仍不清楚。在本文中,我们研究了IMD对大鼠UUO模型中Nox4表达和NADPH氧化酶活性的影响,并探讨了这些作用是否通过cAMP-PKA途径(IMD的重要受体后信号转导途径)在TGF-β1刺激下实现。大鼠近端肾小管细胞(NRK-52E)。肾纤维化是由UUO引起的。将NRK-52E暴露于rhTGF-β1以建立纤维化的体外模型。通过IMD基因转移,IMD在肾脏和NRK-52E中过表达。我们通过测量二氢乙啶水平和脂质过氧化终产物4-hydroxynonenal表达来研究UUO诱导的ROS。通过定量RT-PCR和Western印迹检测UUO大鼠肾梗阻或TGF-β1刺激的NRK-52E中Nox4表达。我们分析了使用光泽精增强的化学发光系统的NADPH氧化酶活性。我们表明,IMD基因转移显着减弱了UUO刺激的ROS产生。 IMD过表达抑制UUO诱导的Nox4上调和NADPH氧化酶的激活。与体内结果一致,IMD阻止了TGF-β1刺激Nox4表达的增加和NADPH氧化酶活性。在NRK-52E中,通过用PKA抑制剂N- [2-(对溴肉桂酸氨基)乙基] -5-异喹啉磺酰胺盐酸盐(H-89)预处理消除了IMD的这些有益作用,并通过可渗透细胞的cAMP进行了模拟类似物二丁基-cAMP。我们的结果表明,IMD通过抑制Nox4发挥抗氧化作用,并且该作用可以通过cAMP-PKA途径介导。

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