首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >MicroRNA-192 in diabetic kidney glomeruli and its function in TGF-β-induced collagen expression via inhibition of E-box repressors
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MicroRNA-192 in diabetic kidney glomeruli and its function in TGF-β-induced collagen expression via inhibition of E-box repressors

机译:糖尿病肾小球中的MicroRNA-192及其通过抑制E-box阻遏物在TGF-β诱导的胶原蛋白表达中的功能

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摘要

Key features of diabetic nephropathy (DN) include the accumulation of extracellular matrix proteins such as collagen 1-α 1 and -2 (Col1a1 and -2). Transforming growth factor β1 (TGF-β), a key regulator of these extracellular matrix genes, is increased in mesangial cells (MC) in DN. By microarray profiling, we noted that TGF-β increased Col1a2 mRNA in mouse MC (MMC) but also decreased mRNA levels of an E-box repressor, δEF1. TGF-β treatment or short hairpin RNAs targeting δEF1 increased enhancer activity of upstream E-box elements in the Col1a2 gene. TGF-β also decreased the expression of Smad-interacting protein 1 (SIP1), another E-box repressor similar to δEF1. Interestingly, we noted that SIP1 is a target of microRNA-192 (miR-192), a key miR highly expressed in the kidney. miR-192 levels also were increased by TGF-β in MMC. TGF-β treatment or transfection with miR-192 decreased endogenous SIP1 expression as well as reporter activity of a SIP1 3′ UTR-containing luciferase construct in MMC. Conversely, a miR-192 inhibitor enhanced the luciferase activity, confirming SIP1 to be a miR-192 target. Furthermore, miR-192 synergized with δEF1 short hairpin RNAs to increase Col1a2 E-box-luc activity. Importantly, the in vivo relevance was noted by the observation that miR-192 levels were enhanced significantly in glomeruli isolated from streptozotocin-injected diabetic mice as well as diabetic db/db mice relative to corresponding nondiabetic controls, in parallel with increased TGF-β and Col1a2 levels. These results uncover a role for miRs in the kidney and DN in controlling TGF-β-induced Col1a2 expression by down-regulating E-box repressors.
机译:糖尿病肾病(DN)的关键特征包括细胞外基质蛋白(例如胶原蛋白1-α1和-2(Col1a1和-2))的积累。这些细胞外基质基因的关键调节因子转化生长因子β1(TGF-β)在DN的系膜细胞(MC)中增加。通过微阵列分析,我们注意到TGF-β增加了小鼠MC(MMC)中Col1a2 mRNA的表达,但同时也降低了E-box阻遏物δEF1的mRNA水平。 TGF-β处理或靶向δEF1的短发夹RNA可提高Col1a2基因上游E-box元件的增强子活性。 TGF-β还降低了Smad相互作用蛋白1(SIP1)的表达,Smad相互作用蛋白1是另一个类似于δEF1的E-box阻遏物。有趣的是,我们注意到SIP1是microRNA-192(miR-192)的靶标,microRNA-192是在肾脏中高度表达的关键miR。在MMC中,TGF-β也增加了miR-192的水平。在MMC中,用TGF-β处理或用miR-192转染可降低内源性SIP1表达以及SIP1 3'含UTR的荧光素酶构建体的报道分子活性。相反,miR-192抑制剂增强了萤光素酶活性,从而确认SIP1为miR-192靶标。此外,miR-192与δEF1短发夹RNA协同作用以增加Col1a2 E-box-luc活性。重要的是,观察到的体内相关性表明,与相应的非糖尿病对照组相比,从注射链脲佐菌素注射的糖尿病小鼠以及糖尿病db / db小鼠中分离出的肾小球中的miR-192水平显着提高,同时TGF-β和Col1a2水平。这些结果揭示了miRs在肾脏和DN中通过下调E-box阻遏物来控制TGF-β诱导的Col1a2表达的作用。

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