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Transcriptional activation of microRNA-34a by NF-kappa B in human esophageal cancer cells

机译:NF-κB在人食管癌细胞中转录激活microRNA-34a

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Background miR-34a functions as an important tumor suppressor during the process of carcinogenesis. However, the mechanism of miR-34a dysregulation in human malignancies has not been well elucidated. Our study aimed to further investigate the regulation mechanism of miR-34a. Results We found that overexpression of NF-kappa B p65 subunit could increase miR-34a levels in EC109, an esophageal squamous cancer cell line, while ectopic expression of DN IkappaB leaded to a significant reduction of miR-34a expression. Bioinformatics analysis suggested three putative KB sites in promoter region of miR-34a gene. Mutation two of these KB sites impaired p65 induced miR-34a transcriptional activity. Chromatin immunoprecipitation and electrophoretic mobility shift assays both showed that NF-kappaB could specifically bind to the third KB site located in miR-34a promoter. In addition, we found that overexpression of NF-kappaB p65 could not successfully induce miR-34a expression in esophageal cancer cell lines with mutant p53 or decreased p53. Reporter assay further showed that NF-kappaB-induced miR-34a transcriptional activity was reduced by p53 impairment. Nevertheless, CHIP analysis suggested binding of NF-kappaB to miR-34a promoter was not affected in cells with mutant p53. Conclusions Our work indicates a novel mechanism of miR-34a regulation that NF-kappaB could elevate miR-34a expression levels through directly binding to its promoter. And wildtype p53 is responsible for NF-kappaB-mediated miR-34a transcriptional activity but not for NF-kappaB binding. These findings might be helpful in understanding miR-34a abnormality in human malignancies and open new perspectives for the roles of miR-34a and NF-kappaB in tumor progression.
机译:背景miR-34a在致癌过程中起重要的肿瘤抑制作用。但是,尚未明确阐明人类恶性肿瘤中miR-34a失调的机制。我们的研究旨在进一步研究miR-34a的调控机制。结果我们发现,NF-κBp65亚基的过表达可以增加食管鳞癌EC109 EC109中的miR-34a水平,而异位表达DN IkappaB导致miR-34a表达显着降低。生物信息学分析表明,miR-34a基因启动子区域有3个推测的KB位点。这些KB位点的两个突变会削弱p65诱导的miR-34a转录活性。染色质免疫沉淀和电泳迁移率变动分析均显示NF-κB可以特异性结合miR-34a启动子中的第三个KB位点。此外,我们发现NF-κBp65的过表达不能成功地诱导p53突变或p53降低的食管癌细胞系中miR-34a表达。记者分析还显示,p53损伤降低了NF-κB诱导的miR-34a转录活性。尽管如此,CHIP分析表明,在突变型p53细胞中,NF-κB与miR-34a启动子的结合不受影响。结论我们的工作表明了miR-34a调控的新机制,即NF-κB可以通过直接结合其启动子来提高miR-34a的表达水平。野生型p53负责NF-kappaB介导的miR-34a转录活性,但不负责NF-kappaB的结合。这些发现可能有助于理解人类恶性肿瘤中的miR-34a异常,并为miR-34a和NF-kappaB在肿瘤进展中的作用开辟新的前景。

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