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Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
Overexpression of CircRNA BCRC4 regulates cell apoptosis and MicroRNA-101/EZH2 signaling in bladder cancer
Bo Li1, Fei Xie1, Fu-Xin Zheng1
1Department of Urology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Abstract:
Emerging evidence has indicated that circular RNAs (circRNAs) play pivotal roles in the regulation of cellular processes and are found to be aberrantly expressed in a variety of tumors. However, the clinical role of circRNAs in bladder cancer (BC) and the molecular mechanisms have yet to be fully understood. In this study, the clinical specimens were obtained and the expression level of a circRNA BCRC4 was detected by real-time PCR in both BC tissues and cell line. The circular RNA over-expression plasmid was constructed and transfected into BC cells and related cell line. The cell cycles and apoptosis were observed using inverted microscope and flow cytometry. Western blotting was used to compare the relative protein expression of groups with different treatments. It was found that circRNA BCRC4 expression was lower in BC tissues than in adjacent normal tissues. Furthermore, consequences of forced-expression of BCRC4 promoted apoptosis and inhibited viability of T24T and UMUC3 cells, and up-regulated BCRC4-increased miR-101 level, which suppressed EZH2 expression in both RNA and protein levels. In addition, gambogic acid (GA) is a promising natural anticancer compound for BC therapy, and GA treatment increased the BCRC4 expression in T24T and UMUC3 cells in a dose-dependent manner. Altogether, our findings suggest that BCRC4 functions as a tumor suppressor in BC, and mediates anticancer function, at least in part, by up-regulating the expression of miR-101. Targeting this newly identified circRNA may help us develop a novel strategy for treating human BC.
Insights
Circular RNAs (circRNAs) like BCRC4 are underexpressed in bladder cancer (BC). Upregulating BCRC4 promotes apoptosis and suppresses tumor growth by inhibiting EZH2 via miR-101, offering a potential BC therapy target.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Circular RNAs (circRNAs) are increasingly recognized for their roles in cellular regulation and cancer.
- Aberrant circRNA expression is common in various tumors, but their specific function in bladder cancer (BC) remains unclear.
- Understanding circRNA mechanisms is crucial for developing novel BC diagnostics and therapeutics.
Purpose of the Study:
- To investigate the clinical significance and molecular mechanisms of circRNA BCRC4 in bladder cancer (BC).
- To explore the potential of BCRC4 as a therapeutic target for BC.
Main Methods:
- Real-time PCR was used to quantify BCRC4 expression in BC tissues and cell lines.
- circRNA BCRC4 was overexpressed in BC cells to assess its effects on cell cycle and apoptosis.
- Western blotting and flow cytometry were employed to analyze protein expression and cell death.
- The interaction between BCRC4, miR-101, and EZH2 was investigated.
Main Results:
- BCRC4 expression was significantly lower in BC tissues compared to adjacent normal tissues.
- Forced expression of BCRC4 induced apoptosis and reduced viability in BC cells (T24T and UMUC3).
- BCRC4 overexpression upregulated miR-101, which in turn suppressed EZH2 at both RNA and protein levels.
- Gambogic acid, a natural compound, dose-dependently increased BCRC4 expression in BC cells.
Conclusions:
- BCRC4 acts as a tumor suppressor in bladder cancer.
- BCRC4 exerts its anticancer effects partly by enhancing miR-101 expression, leading to EZH2 inhibition.
- Targeting BCRC4 presents a promising novel therapeutic strategy for human BC.
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