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Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
miR-193a-3p functions as a tumor suppressor in lung cancer by down-regulating ERBB4
Hongwei Liang1, Minghui Liu1, Xin Yan2
1From the Jiangsu Engineering Research Center for microRNA Biology and Biotechnology, State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, 22 Hankou Road, Nanjing, Jiangsu 210093, China.
Abstract:
ERBB4, one of four ErbB receptor tyrosine kinase family members, plays an important role in the etiology and progression of lung cancer. In this study, we found that the ERBB4 protein levels were consistently up-regulated in lung cancer tissues, whereas the mRNA levels varied randomly, suggesting that a post-transcriptional mechanism was involved in regulating ERBB4 expression. Because microRNAs are powerful post-transcriptional regulators of gene expression, we used bioinformatic analyses to search for microRNAs that can potentially target ERBB4. We identified specific targeting sites for miR-193a-3p in the 3'-UTR of ERBB4. We further identified an inverse correlation between miR-193a-3p levels and ERBB4 protein levels, but not mRNA levels, in lung cancer tissue samples. By overexpressing or knocking down miR-193a-3p in lung cancer cells, we experimentally confirmed that miR-193a-3p directly recognizes the 3'-UTR of the ERBB4 transcript and regulates ERBB4 expression. Furthermore, the biological consequences of the targeting of ERBB4 by miR-193a-3p were examined in vitro via cell proliferation, invasion, and apoptosis assays and in vivo using a mouse xenograft tumor model. We demonstrated that the repression of ERBB4 by miR-193a-3p suppressed proliferation and invasion and promoted apoptosis in lung cancer cells and that miR-193a-3p exerted an anti-tumor effect by negatively regulating ERBB4 in xenograft mice. Taken together, our findings provide the first clues regarding the role of miR-193a-3p as a tumor suppressor in lung cancer through the inhibition of ERBB4 translation.
Insights
MicroRNA miR-193a-3p suppresses lung cancer progression by inhibiting ERBB4 protein translation. This study reveals miR-193a-3p as a potential tumor suppressor targeting ERBB4 in lung cancer.
Area of Science:
- Molecular Biology
- Oncology
- Gene Regulation
Background:
- ERBB4 (ErbB receptor tyrosine kinase) is implicated in lung cancer development.
- ERBB4 protein is upregulated in lung cancer, but mRNA levels vary, suggesting post-transcriptional regulation.
Purpose of the Study:
- To investigate the role of microRNAs in regulating ERBB4 expression in lung cancer.
- To identify specific microRNAs targeting ERBB4 and elucidate their functional impact on lung cancer progression.
Main Methods:
- Bioinformatic analysis to predict microRNA binding sites in ERBB4 3'-UTR.
- Correlation analysis of miR-193a-3p and ERBB4 levels in lung cancer tissues.
- In vitro experiments (overexpression/knockdown) to validate miR-193a-3p targeting of ERBB4.
- In vitro assays (proliferation, invasion, apoptosis) and in vivo xenograft mouse model to assess anti-tumor effects.
Main Results:
- miR-193a-3p was identified as a direct regulator of ERBB4 expression.
- Inverse correlation observed between miR-193a-3p and ERBB4 protein levels in lung cancer tissues.
- miR-193a-3p suppressed lung cancer cell proliferation and invasion, and promoted apoptosis in vitro.
- miR-193a-3p demonstrated anti-tumor effects in vivo by inhibiting ERBB4.
Conclusions:
- miR-193a-3p acts as a tumor suppressor in lung cancer by inhibiting ERBB4 translation.
- This finding highlights the therapeutic potential of targeting the miR-193a-3p/ERBB4 axis in lung cancer treatment.
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