Long Xiao-Ran, He Yong, Huang Cheng, Li Jun
School of Pharmacy, Anhui Key Laboratory of Bioactivity of Natural Products, Anhui Medical University, P.R. China.
Int J Oncol. 2014 Jun;44(6):1915-22. doi: 10.3892/ijo.2014.2373. Epub 2014 Apr 8.
In general, microRNAs, a class of small (~21 nucleotide) non-coding RNAs, negatively regulate the expression of their target genes. Dysregulation of miRNAs is a common feature in human cancers, but this phenomenon has not been studied extensively in hepatocellular carcinoma (HCC). miR‑148a, a member of the miR-148/152 family, has been found to be downregulated in several tumor types and has been suggested to be a tumor suppressor gene; however, its function in HCC remains unclear. Herein, we describe the epigenetic regulation of miR-148a and its impact on HCC cells. We found that, due to the hypermethylation of its CpG island, miR-148a undergoes methylation-mediated silencing in HCC cell lines. Additionally, DNMT1, the DNA methyltransferase that maintains methylation patterns, is aberrantly upregulated in HCC cell lines, and its overexpression is responsible for hypermethylation of the miR-148a promoter. Intriguingly, the expression of DNMT1, which is a target of miR-148a, is inversely correlated with the expression of miR-148a in HCC cells. These results lead us to propose the existence of a negative feedback regulatory loop between miR-148a and DNMT1 in HCC. Importantly, we demonstrate that the overexpression of miR-148a significantly inhibits HCC cell proliferation and cell cycle progression. Our results suggest the existence of a novel miR-148a-DNMT1 regulatory circuit and indicate that miR-148a acts as a tumor suppressor during hepatocellular carcinogenesis. These results may provide a promising alterative strategy for the therapeutic treatment of HCC.
一般来说,微小RNA是一类小的(约21个核苷酸)非编码RNA,可负向调节其靶基因的表达。微小RNA的失调是人类癌症的一个常见特征,但这种现象在肝细胞癌(HCC)中尚未得到广泛研究。miR-148a是miR-148/152家族的成员,已发现在几种肿瘤类型中表达下调,并被认为是一种肿瘤抑制基因;然而,其在HCC中的功能仍不清楚。在此,我们描述了miR-148a的表观遗传调控及其对HCC细胞的影响。我们发现,由于其CpG岛的高甲基化,miR-148a在HCC细胞系中经历甲基化介导的沉默。此外,维持甲基化模式的DNA甲基转移酶DNMT1在HCC细胞系中异常上调,其过表达导致miR-148a启动子的高甲基化。有趣的是,作为miR-148a靶标的DNMT1的表达与HCC细胞中miR-148a的表达呈负相关。这些结果使我们提出在HCC中miR-148a和DNMT1之间存在负反馈调节环。重要的是,我们证明miR-148a的过表达显著抑制HCC细胞增殖和细胞周期进程。我们的结果表明存在一种新的miR-