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Methylation-mediated repression of microRNA 129-2 enhances oncogenic SOX4 expression in HCC

机译:甲基化介导的微小RNA 129-2阻遏增强肝癌中致癌性SOX4的表达

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Background & Aims: Aberration of miR-129-2 has been linked to a variety of human tumours. However, whether miR-129-2 is involved in hepatocarcinogenesis remains unknown. Here, we investigate the involvement of miR-129-2 in HBV infection-related HCC. Methods: A total of 75 paired tumour and their corresponding non-tumour liver tissues from HCC patients with serum HBsAg positive were collected. The methylation of miR-129-2 gene was quantitatively analysed by a DNA methylation-sensitive endonuclease digestion followed by quantitative PCR. The expression of mature miR-129-2 (miR-129-3p) was detected by Taqman RT-PCR. SOX4 expression was detected using quantitative realtime RT-PCR, western blot and immunohistochemical staining. The function of miR-129-2 was investigated using cell proliferation and clonogenicity assays in vitro. Results: Compared with the adjacent non-tumour tissues, tumour tissues exhibited significantly increased miR-129-2 hypermethylation both in frequency (37.33% vs. 8%, P < 0.0001) and in intensity (14.77% vs. 3.08%, P = 0.002). Accordantly, miR-129-3p expression in HCC tissues was significantly lower than that in non-tumour tissues (P = 0.0461), in a manner reversely correlated with the level of miR-129-2 hypermethylation. Notably, SOX4 level in the HCC tissues was significantly higher than that in non-tumour tissues (P = 0.0174) and normal liver tissues (P = 0.0077), correlated reversely with miR-129-3p level (P = 0.0105). Furthermore, overexpression of miR-129-2 in HepG2 reduced cell proliferation and clonogenicity, while co-expression with SOX4 could partially reverse its antitumor effects. In addition, SOX4 in HepG2 cell can enhance ??-catenin/TCF activity by increasing ??-catenin level. Conclusion: The current data indicated that methylation-mediated repression of miR-129-2 may enhance oncogenic SOX4 expression and involve in HCC tumorigenesis. ? 2012 John Wiley & Sons A/S.
机译:背景与目的:miR-129-2的畸变与多种人类肿瘤有关。但是,miR-129-2是否参与肝癌发生仍不清楚。在这里,我们调查了miR-129-2在HBV感染相关的HCC中的参与。方法:收集75例血清HBsAg阳性的HCC患者的配对肿瘤及其相应的非肿瘤肝组织。通过DNA甲基化敏感的核酸内切酶消化,然后进行定量PCR,定量分析了miR-129-2基因的甲基化。通过Taqman RT-PCR检测成熟miR-129-2(miR-129-3p)的表达。使用实时定量RT-PCR,蛋白质印迹和免疫组化染色检测SOX4表达。在体外使用细胞增殖和克隆形成性试验研究了miR-129-2的功能。结果:与相邻的非肿瘤组织相比,肿瘤组织在频率(37.33%对8%,P <0.0001)和强度(14.77%对3.08%,P = 0.002)。因此,肝癌组织中miR-129-3p的表达显着低于非肿瘤组织(P = 0.0461),其表达方式与miR-129-2甲基化水平呈负相关。值得注意的是,HCC组织中的SOX4水平显着高于非肿瘤组织(P = 0.0174)和正常肝组织(P = 0.0077),与miR-129-3p水平呈负相关(P = 0.0105)。此外,在HepG2中过表达miR-129-2会降低细胞增殖和克隆形成能力,而与SOX4共表达则可以部分逆转其抗肿瘤作用。另外,HepG2细胞中的SOX4可以通过增加β-连环蛋白水平来增强β-连环蛋白/ TCF活性。结论:目前的数据表明,miR-129-2的甲基化介导的抑制可能增强致癌SOX4表达,并参与HCC的肿瘤发生。 ? 2012 John Wiley&Sons A / S。

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