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MicroRNA-124 Regulates STAT3 Expression and Is Down-regulated in Colon Tissues of Pediatric Patients With Ulcerative Colitis

机译:MicroRNA-124调节小儿溃疡性结肠炎患者结肠组织中的STAT3表达并下调

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Background & Aims - Altered levels and functions of microRNAs (miRs) have been associated with inflammatory bowel diseases (IBDs), although little is known about their roles in pediatric IBD. We investigated whether colonic mucosal miRs are altered in children with ulcerative colitis (UC). Methods - We used a library of 316 miRs to identify those that regulate phosphorylation of STAT3 in NCM460 human colonocytes incubated with interleukin-6. Levels of miR-124 were measured by real-time PCR analysis of colon biopsies from pediatric and adult patients with UC and patients without IBD (controls), and of HCT-116 colonocytes incubated with 5-aza-2’-deoxycytidine. Methylation of the MIR124 promoter was measured by quantitative methylation-specific PCR. Results - Levels of phosphorylated STAT3 and the genes it regulates (encoding VEGF, BCL2, BCLXL, and MMP9) were increased in pediatric patients with UC, compared to control tissues. Overexpression of miR-124, let-7, miR-125, miR-26, or miR-101 reduced STAT3 phosphorylation by ≥75% in NCM460 cells; miR-124 had the greatest effect. miR-124 was downregulated specifically in colon tissues from pediatric patients with UC and directly targeted STAT3 mRNA. Levels of miR-124 were decreased whereas levels of STAT3 phosphorylation increased in colon tissues from pediatric patients with active UC, compared to those with inactive disease. Furthermore, levels of miR-124 and STAT3 were inversely correlated in mice with experimental colitis. Downregulation of miR-124 in tissues from children with UC was attributed to hypermethylation of its promoter region. Incubation of HCT-116 colonocytes with 5-aza-2’ deoxycytidine upregulated miR-124 and reduced levels of STAT3 mRNA. Conclusions - MiR-124 appears to regulate the expression of STAT3. Reduced levels of miR-124 in colon tissues of children with active UC appear to increase expression and activity of STAT3, which could promote inflammation and pathogenesis of UC in children .
机译:背景与目的-尽管人们对其在小儿IBD中的作用所知甚少,但microRNA(miR)的水平和功能改变与炎症性肠病(IBD)有关。我们调查了溃疡性结肠炎(UC)患儿的结肠黏膜miRs是否改变。方法-我们使用了316个miR的文库来鉴定那些与白介素6孵育的NCM460人结肠细胞中STAT3磷酸化的调控因子。通过实时PCR分析小儿和成年UC患儿和成年IBD患者(对照)的结肠活检以及与5-氮杂2'-脱氧胞苷孵育的HCT-116结肠细胞,对miR-124的水平进行了测量。通过定量甲基化特异性PCR来测量MIR124启动子的甲基化。结果-与对照组相比,小儿UC患者的STAT3磷酸化水平及其调节的基因(编码VEGF,BCL2,BCLXL和MMP9)增加。在NCM460细胞中,miR-124,let-7,miR-125,miR-26或miR-101的过度表达使STAT3磷酸化降低了≥75%; miR-124作用最大。在患有UC和直接靶向STAT3 mRNA的小儿患者的结肠组织中,miR-124特异性下调。与没有活动性疾病的儿童相比,患有活动性UC的儿童患者的结肠组织中的miR-124水平降低,而STAT3磷酸化水平升高。此外,在患有实验性结肠炎的小鼠中,miR-124和STAT3的含量呈负相关。 UC儿童的组织中miR-124的下调归因于其启动子区域的甲基化。将HCT-116结肠细胞与5-氮杂2'脱氧胞苷一起孵育可上调miR-124,并降低STAT3 mRNA的水平。结论-MiR-124似乎调节STAT3的表达。活动性UC患儿结肠组织中miR-124含量降低似乎会增加STAT3的表达和活性,这可能会促进儿童UC的炎症和发病机理。

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