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Melatonin Downregulates PD-L1 Expression and Modulates Tumor Immunity in KRAS-Mutant Non-Small Cell Lung Cancer
Yi-Chun Chao1,2, Kang-Yun Lee3,4,5, Sheng-Ming Wu3,4
1Department of Biochemistry and Molecular Cell Biology, School of Medicine, College of Medicine, Taipei Medical University, Taipei 110, Taiwan.
Abstract:
Non-small cell lung cancer (NSCLC) patients harboring a KRAS mutation have unfavorable therapeutic outcomes with chemotherapies, and the mutation also renders tolerance to immunotherapies. There is an unmet need for a new strategy for overcoming immunosuppression in KRAS-mutant NSCLC. The recently discovered role of melatonin demonstrates a wide spectrum of anticancer impacts; however, the effect of melatonin on modulating tumor immunity is largely unknown. In the present study, melatonin treatment significantly reduced cell viability accompanied by inducing cell apoptosis in KRAS-mutant NSCLC cell lines including A549, H460, and LLC1 cells. Mechanistically, we found that lung cancer cells harboring the KRAS mutation exhibited a higher level of programmed death ligand 1 (PD-L1). However, treatment with melatonin substantially downregulated PD-L1 expressions in both the presence and absence of interferon (IFN)-γ stimulation. Moreover, KRAS-mutant lung cancer cells exhibited higher Yes-associated protein (YAP) and transcriptional coactivator with PDZ-binding motif (TAZ) levels, and PD-L1 expression was positively correlated with YAP and TAZ in lung cancer cells. Treatment with melatonin effectively suppressed YAP and TAZ, which was accompanied by downregulation of YAP/TAZ downstream gene expressions. The combination of melatonin and an inhibitor of YAP/TAZ robustly decreased YAP and PD-L1 expressions. Clinical analysis using public databases revealed that PD-L1 expression was positively correlated with YAP and TAZ in patients with lung cancer, and PD-L1 overexpression suggested poor survival probability. An animal study further revealed that administration of melatonin significantly inhibited tumor growth and modulated tumor immunity in a syngeneic mouse model. Together, our data revealed a novel antitumor mechanism of melatonin in modulating the immunosuppressive tumor microenvironment by suppressing the YAP/PD-L1 axis and suggest the therapeutic potential of melatonin for treating NSCLC.
Insights
Melatonin suppresses tumor growth in KRAS-mutant non-small cell lung cancer (NSCLC) by downregulating PD-L1 and YAP/TAZ. This study suggests melatonin as a potential therapy for NSCLC, overcoming immune suppression.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Non-small cell lung cancer (NSCLC) with KRAS mutations shows poor response to chemotherapy and immunotherapy.
- A significant unmet need exists for novel strategies to overcome immunosuppression in KRAS-mutant NSCLC.
- Melatonin's anticancer effects are known, but its role in modulating tumor immunity remains unclear.
Purpose of the Study:
- To investigate the effects of melatonin on KRAS-mutant NSCLC.
- To elucidate the mechanisms by which melatonin affects tumor immunity and PD-L1 expression.
- To explore the therapeutic potential of melatonin in NSCLC.
Main Methods:
- In vitro studies using NSCLC cell lines (A549, H460, LLC1) treated with melatonin.
- Analysis of PD-L1, YAP, and TAZ expression levels.
- In vivo studies using a syngeneic mouse model.
- Clinical data analysis from public databases.
Main Results:
- Melatonin reduced KRAS-mutant NSCLC cell viability and induced apoptosis.
- Melatonin downregulated PD-L1 expression, independent of IFN-γ stimulation.
- Melatonin suppressed YAP and TAZ levels and their downstream gene expression, correlating positively with PD-L1.
- Melatonin inhibited tumor growth and modulated immunity in vivo.
- Clinical data showed PD-L1/YAP/TAZ correlation and poor survival in lung cancer patients.
Conclusions:
- Melatonin exhibits antitumor activity in KRAS-mutant NSCLC by suppressing the YAP/PD-L1 axis.
- Melatonin effectively modulates the immunosuppressive tumor microenvironment.
- Melatonin represents a promising therapeutic candidate for NSCLC treatment.
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