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SRC and PIM1 as potential co-targets to overcome resistance in MET deregulated non-small cell lung cancer
Ilaria Attili1,2,3, Laura Bonanno4, Niki Karachaliou1
1Pangaea Oncology, Laboratory of Molecular Biology, Coyote Research Group, Quirón-Dexeus University Institute, Barcelona, Spain.
Background:
The role of MET alterations in non-small cell lung cancer (NSCLC) is increasing and several targeted agents are under evaluation. MET exon 14 skipping mutations and MET amplifications are associated with potential sensitivity to MET inhibition, though resistance mechanisms are emerging. In MET addicted cells, MET inhibition leads to activation of proviral integration site for Moloney murine leukemia virus-1 (PIM1). PIM1 and proto-oncogene tyrosine-protein kinase Src (SRC) can regulate the expression of receptor tyrosine kinases (RTKs), potentially inducing resistance to MET inhibition through cross-activation.
Methods:
We evaluated the activity of class I-II MET inhibitors, the SRC inhibitor dasatinib, and pan-PIM inhibitors in four MET addicted cell lines. We assessed the effect of the dual MET/PIM and MET/SRC inhibition on cell viability and at the protein level. We evaluated RNA expression profiles of the cell lines. Advanced NSCLCs were also screened for MET alterations.
Results:
All cell lines were sensitive to class I-II MET inhibitors. All cell lines were resistant to single PIM and SRC inhibition. Dual MET/PIM inhibition was synergistic or additive in MET amplified cell lines and dual MET/SRC inhibition was highly synergistic in all MET addicted cell lines. The addition of an SRC inhibitor partially prevents the RTKs cross-activation. MET alterations were found in 9 out of 97 evaluable samples (9.3%); median overall survival in MET altered patients was 5 months (95% CI, 3 m-NA).
Conclusions:
We identified a potential role of PIM inhibition in MET amplified tumors and of SRC inhibition in MET addicted tumors. Potential applications of this new treatment strategy warrant further evaluation.
Insights
MET targeted therapy resistance in non-small cell lung cancer (NSCLC) can be overcome by dual inhibition. Targeting MET with PIM or SRC inhibitors shows promise for overcoming resistance in MET-altered NSCLC.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- MET alterations are increasingly recognized in non-small cell lung cancer (NSCLC).
- MET exon 14 skipping mutations and amplifications predict sensitivity to MET inhibitors, but resistance mechanisms are emerging.
- MET inhibition can activate PIM1 and SRC, which may drive resistance via RTK cross-activation.
Purpose of the Study:
- To evaluate the efficacy of MET inhibitors combined with PIM or SRC inhibitors in MET-addicted NSCLC.
- To investigate resistance mechanisms to MET inhibition and potential therapeutic strategies.
- To screen advanced NSCLC samples for MET alterations.
Main Methods:
- Assessed activity of MET, SRC, and PIM inhibitors in MET-addicted NSCLC cell lines.
- Evaluated dual MET/PIM and MET/SRC inhibition effects on cell viability and protein levels.
- Analyzed RNA expression profiles and screened patient samples for MET alterations.
Main Results:
- All cell lines were sensitive to MET inhibitors but resistant to single PIM or SRC inhibition.
- Dual MET/PIM inhibition showed synergy in MET-amplified cell lines; dual MET/SRC inhibition was highly synergistic in all tested cell lines.
- SRC inhibition partially prevented RTK cross-activation; MET alterations were found in 9.3% of NSCLC samples, with poor median overall survival.
Conclusions:
- PIM inhibition may benefit MET-amplified NSCLC, while SRC inhibition could be effective in MET-addicted NSCLC.
- Combined MET and SRC/PIM inhibition represents a potential therapeutic strategy for MET-altered NSCLC.
- Further evaluation of this dual inhibition strategy is warranted for clinical application.
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