Hsa-circRNA-0015004 promotes hepatocellular carcinoma development via miRNA-330-3p/RCC2 axis

Author:

Zhao Jie1,Zhang Tong2,Wu Peng3,Wu Kejia4,Qiu Jiajing3,Shi Longqing4,Zhu Qiang3,Zhou Jun3

Affiliation:

1. Wujin Hospital of Traditional Chinese Medicine

2. Xinghua People's Hospital Affiliated Yangzhou University

3. Children's Hospital of Nanjing Medical University

4. The First People’s Hospital of Changzhou, The Third Affiliated Hospital of Soochow University

Abstract

Abstract

Background: Although circular RNAs (circRNA) have been demonstrated to modulate tumor initiation and progression, their roles in the proliferation of hepatocellular carcinoma (HCC) are still poorly understood. Methods: Based on the analysis of GEO data (GSE12174), hsa-circRNA-0015004 (circ-0015004) was screened and validated in 80 sets of HCC specimens. Subcellular fractionation analysis was designed to determine the cellular location of circ-0015004. Colony formation and cell counting kit-8 were performed to investigate the role of circ-0015004 in HCC. Dual-luciferase reporter gene assays, RNA immunoprecipitation and chromatin immunoprecipitation were employed to verify the interaction among circ-0015004, miR-330-3p and regulator of chromatin condensation 2 (RCC2). Results: The expression level of circ-0015004 was significantly upregulated in HCC cell lines and HCC tissues. HCC patients with higher circ-0015004 levels displayed shorter overall survival, and higher tumor size and TNM stage. Moreover, knockdown of circ-0015004 significantly reduced HCC cell proliferation in vitro and inhibited the growth of HCC in nude mice. Mechanistic studies revealed that circ-0015004 could upregulate the expression of RCC2 by sponging miR-330-3p, thereby promoting HCC cell proliferation. Furthermore, we identified that Ying Yang 1 (YY1) could function as an important regulator of circ-0015004 transcription. Conclusions: This study systematically demonstrated the novel regulatory signaling of circ-0015004/miR-330-3p/RCC2 axis in promoting HCC progression, providing insight into HCC diagnosis and treatment from bench to clinic.

Publisher

Springer Science and Business Media LLC

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