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Menin-mediated Repression of Glycolysis in Combination with Autophagy Protects Colon Cancer Against Small-molecule
Bryson W Katona1,2, Taylor Hojnacki2, Rebecca A Glynn2
1Division of Gastroenterology, University of Pennsylvania Perelman School of Medicine, Philadelphia, Pennsylvania. Bryson.Katona@pennmedicine.upenn.edu huax@pennmedicine.upenn.edu.
Abstract:
Menin serves both tumor suppressor and promoter roles in a highly tumor-specific manner. In colorectal cancer, menin is overexpressed and plays a critical role in regulating transcription of SKP2, and combined treatment with a menin inhibitor and small-molecule EGFR inhibitor (EGFRi) leads to synergistic killing of colorectal cancer cells. However, the full spectrum of menin function in colorectal cancer remains uncertain. Herein, we demonstrate that menin inhibition increases glycolysis in colorectal cancer cells. This menin inhibitor-induced increase in glycolysis occurs in an mTOR-independent manner and enhances the sensitivity of colorectal cancer cells to EGFRis. In addition, we show that EGFRis induce autophagy in colorectal cancer cells, which is important for cell survival in the setting of combined treatment with an EGFRi and menin inhibitor. Inhibition of autophagy with chloroquine further sensitizes colorectal cancers to treatment with the combination of an EGFRi and menin inhibitor. Together, these findings uncover a novel role for menin in colorectal cancer as a repressor of glycolysis and demonstrate that menin inhibitor-induced increases in glycolysis sensitize colorectal cancer cells to EGFRis. In addition, these findings illustrate the importance of autophagy as a protective mechanism against EGFRis, especially in the presence of menin inhibition. Ultimately, these data open the possibility of using menin-mediated regulation of glycolysis to potentially improve treatment modalities for colorectal cancer.
Insights
Menin inhibition boosts glycolysis in colorectal cancer, enhancing sensitivity to EGFR inhibitors. Autophagy protects cancer cells, and inhibiting it further improves combined treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metabolism
Background:
- Menin exhibits dual roles as a tumor suppressor and promoter, varying by cancer type.
- In colorectal cancer (CRC), menin is overexpressed and regulates SKP2 transcription.
- Combined menin and EGFR inhibitor (EGFRi) treatment shows synergistic effects in CRC cells.
Purpose of the Study:
- To investigate the role of menin in regulating glycolysis in colorectal cancer.
- To determine the impact of menin inhibition on CRC cell sensitivity to EGFR inhibitors.
- To explore the role of autophagy in CRC cell survival during combined menin inhibition and EGFRi treatment.
Main Methods:
- Investigated menin's effect on glycolysis in colorectal cancer cells.
- Assessed the impact of menin inhibition on sensitivity to EGFR inhibitors.
- Examined the role of autophagy and its inhibition (using chloroquine) in combined therapy response.
Main Results:
- Menin inhibition increases glycolysis in colorectal cancer cells independently of mTOR.
- Increased glycolysis enhances colorectal cancer cell sensitivity to EGFR inhibitors.
- EGFR inhibitors induce autophagy, which aids cancer cell survival; inhibiting autophagy potentiates combination therapy.
Conclusions:
- Menin acts as a glycolysis repressor in colorectal cancer.
- Menin inhibition-induced glycolysis sensitizes colorectal cancer to EGFR inhibitors.
- Autophagy is a survival mechanism against combined EGFRi and menin inhibition, and its blockade enhances treatment efficacy.
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