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EGFR blockade enriches for lung cancer stem-like cells through Notch3-dependent signaling
Rajeswara Rao Arasada1, Joseph M Amann1, Mohammad A Rahman2
1Department of Internal Medicine, The Ohio State University Medical Center, Columbus, Ohio.
Abstract:
Mutations in the epidermal growth factor receptor (EGFR) are the most common actionable genetic abnormalities yet discovered in lung cancer. However, targeting these mutations with kinase inhibitors is not curative in advanced disease and has yet to demonstrate an impact on potentially curable, early-stage disease, with some data suggesting adverse outcomes. Here, we report that treatment of EGFR-mutated lung cancer cell lines with erlotinib, while showing robust cell death, enriches the ALDH(+) stem-like cells through EGFR-dependent activation of Notch3. In addition, we demonstrate that erlotinib treatment increases the clonogenicity of lung cancer cells in a sphere-forming assay, suggesting increased stem-like cell potential. We demonstrate that inhibition of EGFR kinase activity leads to activation of Notch transcriptional targets in a γ secretase inhibitor-sensitive manner and causes Notch activation, leading to an increase in ALDH high(+) cells. We also find a kinase-dependent physical association between the Notch3 and EGFR receptors and tyrosine phosphorylation of Notch3. This could explain the worsened survival observed in some studies of erlotinib treatment at early-stage disease, and suggests that specific dual targeting might overcome this adverse effect.
Insights
Erlotinib treatment for EGFR-mutated lung cancer increases stem-like cells via Notch3 activation. This EGFR-dependent mechanism may explain adverse outcomes in early-stage disease and suggests dual targeting strategies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Epidermal growth factor receptor (EGFR) mutations are common in lung cancer.
- EGFR kinase inhibitors like erlotinib show limited efficacy in advanced disease and potential adverse effects in early-stage lung cancer.
Purpose of the Study:
- To investigate the effects of erlotinib on stem-like cells in EGFR-mutated lung cancer.
- To elucidate the molecular mechanisms underlying erlotinib's impact on cancer stem cells.
Main Methods:
- Treatment of EGFR-mutated lung cancer cell lines with erlotinib.
- Assessment of aldehyde dehydrogenase (ALDH) activity and sphere-forming capacity.
- Analysis of Notch3 receptor activation and its association with EGFR.
Main Results:
- Erlotinib treatment led to increased ALDH(+) stem-like cells and enhanced clonogenicity.
- EGFR inhibition activated Notch3 signaling in a gamma-secretase inhibitor-sensitive manner.
- A physical association and tyrosine phosphorylation of Notch3 by EGFR were observed.
Conclusions:
- Erlotinib enriches cancer stem cells through EGFR-dependent Notch3 activation.
- This mechanism may contribute to worsened survival in some erlotinib-treated patients.
- Dual targeting of EGFR and Notch3 may offer a more effective therapeutic strategy.
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