生物
癌症研究
上皮细胞粘附分子
DNA甲基化
小RNA
转录因子
细胞生物学
分子生物学
细胞粘附分子
基因表达
基因
遗传学
作者
Liang Li,Jing Tang,Baohua Zhang,Wen Yang,Mi-yang Liu-Gao,Ruoyu Wang,Yexiong Tan,Jianling Fan,Yan–Xin Chang,Jing Fu,Feng Jiang,Cai–Yang Chen,Ying‐Cheng Yang,Jin Gu,Dingming Wu,Linna Guo,Dan Cao,Hengyu Li,Guangwen Cao,Mengchao Wu,Michael Q. Zhang,Lei Chen,Hongyang Wang
出处
期刊:Gut
[BMJ]
日期:2014-02-26
卷期号:64 (1): 156-167
被引量:126
标识
DOI:10.1136/gutjnl-2013-305715
摘要
Objective
Liver tumour-initiating cells (T-ICs) are critical for hepatocarcinogenesis. However, the underlying mechanism regulating the function of liver T-ICs remains unclear. Methods
Tissue microarrays containing 242 hepatocellular carcinoma (HCC) samples were used for prognostic analysis. Magnetically activated cell sorting was used to isolate epithelial cell adhesion molecule (EPCAM)-positive cells. The gene expressions affected by miR-429 were determined by arrays. Co-immunoprecipitation was used to study interactions among retinoblastoma protein (RB1), Rb binding protein 4 (RBBP4) and E2F transcription factor 1 (E2F1). The DNA methylation status in CpG islands was detected by quantitative methylation analysis. miRNAs in microvesicles were isolated by a syringe filter system. Results
The significant prognosis factor miR-429 was upregulated in HCC tissues and also in primary liver T-ICs isolated from clinical samples. The enrichment of miR-429 in EPCAM+ T-ICs contributed to hepatocyte self-renewal, malignant proliferation, chemoresistance and tumorigenicity. A novel functional axis involving miR-429, RBBP4, E2F1 and POU class 5 homeobox 1 (POU5F1 or OCT4) governing the regulation of liver EPCAM+ T-ICs was established in vitro and in vivo. The molecular mechanism regulating miR-429 expression, involving four abnormal hypomethylated sites upstream of the miR-200b/miR-200a/miR-429 cluster, was first defined in both EPCAM+ liver T-ICs and very early-stage HCC tissues. miR-429 secreted by high-expressing cells has the potential to become a proactive signalling molecule to mediate intercellular communication. Conclusions
Epigenetic modification of miR-429 can manipulate liver T-ICs by targeting the RBBP4/E2F1/OCT4 axis. This miRNA might be targeted to inactivate T-ICs, thus providing a novel strategy for HCC prevention and treatment.
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