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Published on: July 21, 2018
Targeted BMI1 inhibition impairs tumor growth in lung adenocarcinomas with low CEBPα expression
Kol Jia Yong1, Daniela S Basseres2, Robert S Welner3
1Cancer Science Institute, National University of Singapore, Singapore 117599, Singapore.
Abstract:
Lung cancer is the most common cause of cancer deaths. The expression of the transcription factor C/EBPα (CCAAT/enhancer binding protein α) is frequently lost in non-small cell lung cancer, but the mechanisms by which C/EBPα suppresses tumor formation are not fully understood. In addition, no pharmacological therapy is available to specifically target C/EBPα expression. We discovered a subset of pulmonary adenocarcinoma patients in whom negative/low C/EBPα expression and positive expression of the oncogenic protein BMI1 (B lymphoma Mo-MLV insertion region 1 homolog) have prognostic value. We also generated a lung-specific mouse model of C/EBPα deletion that develops lung adenocarcinomas, which are prevented by Bmi1 haploinsufficiency. BMI1 activity is required for both tumor initiation and maintenance in the C/EBPα-null background, and pharmacological inhibition of BMI1 exhibits antitumor effects in both murine and human adenocarcinoma lines. Overall, we show that C/EBPα is a tumor suppressor in lung cancer and that BMI1 is required for the oncogenic process downstream of C/EBPα loss. Therefore, anti-BMI1 pharmacological inhibition may offer a therapeutic benefit for lung cancer patients with low expression of C/EBPα and high BMI1.
Insights
CCAAT/enhancer binding protein α (C/EBPα) acts as a lung cancer suppressor. Loss of C/EBPα and increased BMI1 expression indicate poor prognosis, suggesting BMI1 inhibition as a potential therapy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Lung cancer is a leading cause of cancer mortality.
- Loss of C/EBPα expression is common in non-small cell lung cancer, but its tumor-suppressive mechanisms are unclear.
- No targeted therapies exist for C/EBPα expression.
Purpose of the Study:
- Investigate the role of C/EBPα in lung cancer.
- Identify the prognostic significance of C/EBPα and BMI1 expression in lung adenocarcinoma.
- Evaluate BMI1 as a therapeutic target in C/EBPα-deficient lung cancer.
Main Methods:
- Generated a lung-specific mouse model with C/EBPα deletion.
- Assessed the impact of Bmi1 haploinsufficiency on tumor development.
- Utilized pharmacological BMI1 inhibition in murine and human lung adenocarcinoma models.
Main Results:
- C/EBPα deletion in mice led to lung adenocarcinoma development.
- Bmi1 haploinsufficiency prevented tumor formation in the C/EBPα-null model.
- BMI1 activity was crucial for tumor initiation and maintenance; its inhibition showed antitumor effects.
Conclusions:
- C/EBPα functions as a tumor suppressor in lung cancer.
- BMI1 is oncogenic downstream of C/EBPα loss.
- Pharmacological inhibition of BMI1 may benefit lung cancer patients with low C/EBPα and high BMI1.
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