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MIR17HG-miR-18a/19a axis regulated by interferon regulatory factor-1 promotes gastric cancer metastasis via Wnt/β-catenin signalling

机译:MIR17HG-miR-18a / 19a轴受干扰素调节因子-1调控通过Wnt /β-catenin信号促进胃癌转移

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摘要

MIR17HG, located on chromosome 13, is a class of Pri-miRNAs that generates six miRNAs: miR-17, miR-18a, miR-19a, miR-20a, miR-19b-1 and miR-92-1. These miRNAs are ubiquitously overexpressed in diverse tumour types and exhibit complex biological links to tumour metastasis. We demonstrated that MIR17HG-derived miR-18a and miR-19a coordinately mediate gastric cancer cell metastasis by directly inhibiting SMAD2 expression and upregulating Wnt/β-catenin signalling. Based on previous studies, we hypothesised that an investigation of MIR17HG inhibition would be beneficial to clinical gastric cancer treatment, and systematically coupled bioinformatics analyses brought interferon regulatory factor-1 (IRF-1) to our attention. We then established stable clones in gastric cancer cells containing a doxycycline-inducible IRF-1 expression system and found that the expression of IRF-1 downregulates the embedded miRNAs of MIR17HG in gastric cancer cells and inhibits gastric cancer cell metastasis by attenuating Wnt/β-catenin signalling. Further rescue assays confirmed the crucial roles of miR-18a and miR-19a in the IRF-1-mediated inhibition of Wnt/β-catenin signalling. We also demonstrated that IRF-1 binds to the transcriptional site in the MIR17HG promoter and inhibits MIR17HG expression. Moreover, IFN-γ induced the IRF-1-mediated downregulation of MIR17HG in gastric cancer cells. Our hypothesis was supported by the results of immunohistochemistry analyses of clinical gastric cancer samples, and we also demonstrated the role of IRF-1 in inhibiting MIR17HG expression and tumour metastasis in vivo. We conclude that IRF-1 inhibits gastric cancer metastasis by downregulating MIR17HG-miR-18a/miR-19a axis expression and attenuating Wnt/β-catenin signalling.
机译:位于13号染色体上的MIR17HG是一类Pri-miRNA,可产生六个miRNA:miR-17,miR-18a,miR-19a,miR-20a,miR-19b-1和miR-92-1。这些miRNA在各种肿瘤类型中普遍存在,并且与肿瘤转移具有复杂的生物学联系。我们证明,MIR17HG衍生的miR-18a和miR-19a通过直接抑制SMAD2表达并上调Wnt /β-catenin信号传导来协调介导胃癌细胞的转移。基于先前的研究,我们假设对MIR17HG抑制作用的研究将有助于临床胃癌的治疗,系统地结合生物信息学分析引起了人们对干扰素调节因子1(IRF-1)的关注。然后,我们在含有强力霉素诱导的IRF-1表达系统的胃癌细胞中建立了稳定的克隆,发现IRF-1的表达下调了MIR17HG在胃癌细胞中的内嵌miRNA,并通过减弱Wnt /β-来抑制胃癌细胞的转移。连环蛋白信号传导。进一步的拯救试验证实了miR-18a和miR-19a在IRF-1介导的Wnt /β-catenin信号传导抑制中的关键作用。我们还证明,IRF-1与MIR17HG启动子中的转录位点结合并抑制MIR17HG的表达。而且,IFN-γ诱导胃癌细胞中IRF-1介导的MIR17HG的下调。临床胃癌样品的免疫组织化学分析结果支持了我们的假设,并且我们还证明了IRF-1在体内抑制MIR17HG表达和肿瘤转移的作用。我们得出结论,IRF-1通过下调MIR17HG-miR-18a / miR-19a轴表达并减弱Wnt /β-catenin信号传导抑制胃癌转移。

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