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Updated: Apr 26, 2026

Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
Suppression of AKT expression by miR-153 produced anti-tumor activity in lung cancer
Ye Yuan1, Weijie Du, Ying Wang
1Department of Pharmacology, Key Laboratory of Cardiovascular Medicine Research, Ministry of Education; State-Province Key Laboratories of Biomedicine-Pharmaceutics of China, Harbin Medical University, Harbin, Heilongjiang, People's Republic of China.
Abstract:
Lung cancer is one of the leading causes of cancer death worldwide. microRNAs have been shown to be a novel class of regulators in lung cancer. Here, we explored the role of miR-153 in the pathogenesis of lung cancer and its therapeutic potential. miR-153 was significantly decreased in lung cancer tissues than the adjacent tissues. The protein and mRNA levels of protein kinase B (AKT), which were shown to promote tumor growth, were both increased in lung cancer tissues than adjacent tissues. Overexpression of miR-153 significantly inhibited AKT protein expression, which were abrogated by co-transfection of AMO-153, the specific inhibitor of miR-153. Luciferase assay showed that transfection of miR-153 markedly suppressed the fluorescent intensity of chimeric vectors carrying the 3'UTR of AKT1, while produced no effect on the mutant construct, indicating that AKT is regulated by miR-153. Overexpression of miR-153 significantly inhibited the proliferation and migration, and promoted apoptosis of cultured lung cancer cells in vitro, and suppressed the growth of xenograft tumors in vivo. Interestingly, lung cancer cells with lower endogenous miR-153 expression are more sensitive to ectopic overexpressed miR-153. The IC50 of miR-153 on lung cancer cells is positive correlated with the endogenous miR-153 level, while negative correlated with AKT level. Knockdown of AKT expression suppressed lung cancer cell proliferation. In summary, miR-153 exerted anti-tumor activity in lung cancer by targeting on AKT. The sensitivity of lung cancer cells to miR-153 is determined by its endogenous miR-153 level.
Insights
MicroRNA-153 (miR-153) acts as a tumor suppressor in lung cancer by targeting AKT. Lower miR-153 levels correlate with increased AKT, promoting cancer growth, while higher miR-153 inhibits lung cancer progression.
Area of Science:
- Molecular Biology
- Oncology
- Gene Regulation
Background:
- Lung cancer remains a leading cause of cancer mortality globally.
- MicroRNAs (miRNAs) are emerging as critical regulators in cancer development.
- The specific role of miR-153 in lung cancer pathogenesis and therapy requires further elucidation.
Purpose of the Study:
- To investigate the role of miR-153 in lung cancer.
- To explore the therapeutic potential of miR-153 in lung cancer.
- To identify the molecular targets of miR-153 in lung cancer cells.
Main Methods:
- Quantitative real-time PCR to measure miR-153 and AKT mRNA levels.
- Western blotting to assess AKT protein expression.
- Luciferase reporter assays to confirm direct targeting of AKT by miR-153.
- In vitro cell proliferation, migration, and apoptosis assays.
- In vivo xenograft tumor models.
Main Results:
- miR-153 expression was significantly downregulated in lung cancer tissues.
- AKT protein and mRNA levels were upregulated in lung cancer tissues.
- Overexpression of miR-153 inhibited AKT expression, suppressed lung cancer cell proliferation and migration, and promoted apoptosis.
- miR-153 directly targets AKT1, as confirmed by luciferase assays.
- Lung cancer cells with lower endogenous miR-153 were more sensitive to miR-153 therapy.
Conclusions:
- miR-153 functions as an anti-tumor agent in lung cancer by targeting AKT.
- miR-153 represents a potential therapeutic target for lung cancer treatment.
- Endogenous miR-153 levels predict sensitivity to miR-153-based therapies.
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