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RBMS3, a downstream target of AMPK, Exerts Inhibitory Effects on Invasion and Metastasis of Lung Cancer
Shi-Lin Lv1,2, Xu Zhou3, Yuan-Jun Li3
1Hospital of Gastroenterology, Institute of Digestive Diseases, The First Affiliated Hospital of Nanchang University, Nanchang, China.
Abstract:
Background: Lung cancer is a highly malignant disease, primarily due to its propensity for metastasis. AMP-activated protein kinase (AMPK), the principal downstream effector of Liver Kinase B1 (LKB1), orchestrates a broad spectrum of molecular targets, thereby constraining tumor invasion and metastasis. In parallel, the RNA-binding protein RBMS3 (RNA-binding motif, single-stranded-interacting protein 3) plays a pivotal role in the epithelial-mesenchymal transition (EMT), a pivotal process in tumorigenesis. Therefore, our research aims to clarify the important role of RBMS3 as a mediator in the LKB1/AMPK inhibition of tumor invasion and metastasis. Methods: We investigated the expression and correlation between RBMS3 and LKB1 in lung cancer tissues utilizing immunohistochemistry and TCGA-LUAD data, respectively. The relationship between RBMS3 and clinical pathological features and prognosis of lung cancer was also analyzed. The functions of RBMS3 in lung cancer cell proliferation, invasion, and migration were investigated in real-time in vitro. Additionally, we investigated the effects of AMPK agonists and inhibitors to explore the mediating role of RBMS3 in AMPK-induced inhibition of lung cancer invasion and migration. Results: The IHC and TCGA data both revealed low expression of RBMS3 in lung cancer. Moreover, we found that low expression of RBMS3 was positively associated with lung cancer's histological grade, clinical stage, and N stage. Additionally, low RBMS3 expression was associated with poor overall survival. Cox regression analysis revealed that RBMS3 was an independent prognostic factor for lung cancer patients. In vitro experiments verified that RBMS3 inhibited lung cancer cell proliferation, invasion, and migration. Furthermore, our findings suggested that RBMS3 played an essential role in mediating AMPK's inhibitory effect on lung cancer invasion and migration. Conclusion: Our study highlights a novel mechanism by which LKB1/AMPK pathway activation inhibits lung cancer invasion and metastasis by promoting RBMS3 expression, offering insights in developing innovative lung cancer therapies.
Insights
Low expression of RNA-binding motif, single-stranded-interacting protein 3 (RBMS3) correlates with advanced lung cancer. RBMS3 mediates the Liver Kinase B1/AMP-activated protein kinase (LKB1/AMPK) pathway
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metastasis
Background:
- Lung cancer metastasis is a major clinical challenge.
- The LKB1/AMPK pathway and RBMS3 are implicated in tumor suppression and epithelial-mesenchymal transition (EMT).
- The precise role of RBMS3 in mediating LKB1/AMPK's anti-metastatic effects requires elucidation.
Purpose of the Study:
- To investigate RBMS3 as a mediator in the LKB1/AMPK pathway's inhibition of lung cancer invasion and metastasis.
- To analyze the correlation between RBMS3 expression and clinical features, and its prognostic value in lung cancer.
Main Methods:
- Immunohistochemistry and TCGA-LUAD data analysis to assess RBMS3 and LKB1 expression.
- Correlation analysis of RBMS3 with clinical pathological features and patient prognosis.
- In vitro studies on lung cancer cell proliferation, invasion, and migration.
- Investigation of RBMS3's role in AMPK-mediated inhibition using agonists and inhibitors.
Main Results:
- Low RBMS3 expression was observed in lung cancer tissues and associated with higher histological grade, clinical stage, and N stage.
- Low RBMS3 expression correlated with poor overall survival and identified RBMS3 as an independent prognostic factor.
- In vitro experiments confirmed RBMS3 inhibits lung cancer cell proliferation, invasion, and migration.
- RBMS3 was found to be essential in mediating the inhibitory effects of AMPK on lung cancer invasion and migration.
Conclusions:
- LKB1/AMPK pathway activation inhibits lung cancer invasion and metastasis by upregulating RBMS3 expression.
- RBMS3 acts as a crucial mediator in the LKB1/AMPK pathway's tumor-suppressive function.
- Targeting the LKB1/AMPK/RBMS3 axis offers potential for novel lung cancer therapies.
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