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长链非编码 RNA UFC1 是 MicroRNA 34a 的靶标,与 mRNA 稳定蛋白 HuR 相互作用,增加 HCC 细胞中β-catenin 的水平。

The long intergenic noncoding RNA UFC1, a target of MicroRNA 34a, interacts with the mRNA stabilizing protein HuR to increase levels of β-catenin in HCC cells.

机构信息

Hepatology Unit and Department of Infectious Diseases, Nanfang Hospital, Southern Medical University, Guangzhou, China; Department of Radiation Oncology, Nanfang Hospital, Southern Medical University, Guangzhou, China.

Department of Radiation Oncology, Nanfang Hospital, Southern Medical University, Guangzhou, China.

出版信息

Gastroenterology. 2015 Feb;148(2):415-26.e18. doi: 10.1053/j.gastro.2014.10.012. Epub 2014 Oct 22.

Abstract

BACKGROUND & AIMS: Altered activities of long noncoding RNAs (lncRNAs) have been associated with cancer development. We investigated the mechanisms by which the long intergenic noncoding RNA UFC1 (lincRNA-UFC1) promotes progression of hepatocellular carcinoma (HCC), using human tissues and cell lines.

METHODS

We used microarrays to compare expression profiles of lncRNAs in HCC samples and adjacent nontumor tissues (controls) from 7 patients. HCC and nontumor tissues were collected from 2006 through 2012 from patients in Guangzhou, China. We used quantitative real-time polymerase chain reaction to measure levels of lincRNA-UFC1 in tissues from 49 patients, and in situ hybridization to measure levels in samples from 131 patients; clinical data were collected from patients for up to 5 years. The lincRNA-UFC1 was expressed transgenically, or knocked down with short hairpin RNAs, in BEL-7402, SK-Hep1, Huh7, and MHCC-97H HCC cell lines; luciferase reporter and RNA immunoprecipitation and pull-down assays were performed. We also analyzed growth of xenograft tumors from these cells in BALB/c nude mice.

RESULTS

Levels of the lincRNA-UFC1 were increased in HCC tissues compared with controls, and associated with tumor size, Barcelona Clinic Liver Cancer stage, and patient outcomes. Transgenic expression of the lincRNA-UFC1 in HCC cells promoted their proliferation and cell-cycle progression and inhibited apoptosis, whereas short hairpin RNA knockdown of lincRNA-UFC1 had opposite effects. Xenograft tumors grown from cells overexpressing lincRNA-UFC1 had larger mean volumes and weights, and formed more rapidly, than tumors grown from control cells. Tumors grown from lincRNA-UFC1 knockdown were smaller than controls. The lincRNA-UFC1 interacted directly with the messenger RNA (mRNA) stabilizing protein HuR (encoded by ELAVL1) to increase levels of β-catenin mRNA (encoded by CTNNB1) and protein. Levels of lincRNA-UFC1 correlated with those of β-catenin in HCC tissues. In contrast, there was a negative correlation between levels of microRNA 34a and lincRNA-UFC1 in HCC tissues; microRNA 34a reduced the stability of lincRNA-UFC1.

CONCLUSIONS

The lincRNA-UFC1, a target of microRNA 34a, promotes proliferation and reduces apoptosis in HCC cells to promote growth of xenograft tumors in mice. It interacts directly with the mRNA stabilizing protein HuR to regulate levels of β-catenin in HCC cells.

摘要

背景与目的

长链非编码 RNA(lncRNA)的活性改变与癌症的发生发展有关。我们通过对人类组织和细胞系进行研究,探讨了长链非编码 RNA UFC1(lincRNA-UFC1)促进肝细胞癌(HCC)进展的机制。

方法

我们采用微阵列比较了 7 例患者 HCC 样本与癌旁非肿瘤组织(对照)之间的 lncRNA 表达谱。2006 年至 2012 年,我们从中国广州的患者中采集 HCC 组织和非肿瘤组织。我们采用实时定量聚合酶链反应测量了 49 例患者组织中 lincRNA-UFC1 的水平,采用原位杂交测量了 131 例患者样本中的 lincRNA-UFC1 水平;我们还从患者处收集了长达 5 年的临床数据。我们通过转基因或短发夹 RNA 敲低的方式在 BEL-7402、SK-Hep1、Huh7 和 MHCC-97H HCC 细胞系中表达 lincRNA-UFC1;我们还进行了荧光素酶报告基因和 RNA 免疫沉淀及下拉实验。我们还分析了这些细胞的异种移植肿瘤在 BALB/c 裸鼠中的生长情况。

结果

与对照组相比,lincRNA-UFC1 在 HCC 组织中的水平升高,并与肿瘤大小、巴塞罗那临床肝癌分期和患者预后相关。在 HCC 细胞中转基因表达 lincRNA-UFC1 可促进其增殖和细胞周期进程,并抑制凋亡,而短发夹 RNA 敲低 lincRNA-UFC1 则有相反的效果。与对照细胞相比,转染 lincRNA-UFC1 的细胞生长的异种移植瘤体积和重量更大,生长更快。与对照细胞相比,lincRNA-UFC1 敲低的肿瘤体积更小。lincRNA-UFC1 与信使 RNA(mRNA)稳定蛋白 HuR(由 ELAVL1 编码)直接相互作用,增加了β-catenin mRNA(由 CTNNB1 编码)和蛋白的水平。在 HCC 组织中,lincRNA-UFC1 的水平与β-catenin 的水平相关。相比之下,在 HCC 组织中,miRNA-34a 与 lincRNA-UFC1 的水平呈负相关;miRNA-34a 降低了 lincRNA-UFC1 的稳定性。

结论

作为 miRNA-34a 的靶标,lincRNA-UFC1 促进 HCC 细胞的增殖并减少凋亡,从而促进异种移植瘤在小鼠中的生长。它与 mRNA 稳定蛋白 HuR 直接相互作用,调节 HCC 细胞中β-catenin 的水平。

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