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c-Src activation mediates erlotinib resistance in head and neck cancer by stimulating c-Met
Laura P Stabile1, Guoqing He, Vivian Wai Yan Lui
1Departments of Pharmacology & Chemical Biology and Otolaryngology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213, USA.
Purpose:
Strategies to inhibit the EGF receptor (EGFR) using the tyrosine kinase inhibitor erlotinib have been associated with limited clinical efficacy in head and neck squamous cell carcinoma (HNSCC). Co-activation of alternative kinases may contribute to erlotinib resistance.
Experimental Design:
We generated HNSCC cells expressing dominant-active c-Src (DA-Src) to determine the contribution of c-Src activation to erlotinib response.
Results:
Expression of DA-Src conferred resistance to erlotinib in vitro and in vivo compared with vector-transfected control cells. Phospho-Met was strongly upregulated by DA-Src, and DA-Src cells did not produce hepatocyte growth factor (HGF). Knockdown of c-Met enhanced sensitivity to erlotinib in DA-Src cells in vitro, as did combining a c-Met or c-Src inhibitor with erlotinib. Inhibiting EGFR resulted in minimal reduction of phospho-Met in DA-Src cells, whereas complete phospho-Met inhibition was achieved by inhibiting c-Src. A c-Met inhibitor significantly sensitized DA-Src tumors to erlotinib in vivo, resulting in reduced Ki67 labeling and increased apoptosis. In parental cells, knockdown of endogenous c-Src enhanced sensitivity to erlotinib, whereas treatment with HGF to directly induce phospho-Met resulted in erlotinib resistance. The level of endogenous phospho-c-Src in HNSCC cell lines was also significantly correlated with erlotinib resistance.
Conclusions:
Ligand-independent activation of c-Met contributes specifically to erlotinib resistance, not cetuximab resistance, in HNSCC with activated c-Src, where c-Met activation is more dependent on c-Src than on EGFR, providing an alternate survival pathway. Addition of a c-Met or c-Src inhibitor to erlotinib may increase efficacy of EGFR inhibition in patients with activated c-Src.
Insights
Activated c-Src confers erlotinib resistance in head and neck cancer by upregulating c-Met. Inhibiting c-Met or c-Src alongside erlotinib may improve treatment efficacy in patients with activated c-Src.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Erlotinib, an EGFR inhibitor, shows limited efficacy in head and neck squamous cell carcinoma (HNSCC).
- Resistance to erlotinib may be driven by co-activation of alternative signaling pathways.
Purpose of the Study:
- To investigate the role of c-Src activation in mediating erlotinib resistance in HNSCC.
- To explore the downstream signaling pathways involved in c-Src-driven erlotinib resistance.
Main Methods:
- Generated HNSCC cell lines expressing dominant-active c-Src (DA-Src).
- Assessed erlotinib response in DA-Src cells in vitro and in vivo.
- Utilized gene knockdown and pharmacological inhibitors targeting EGFR, c-Src, and c-Met.
- Analyzed protein phosphorylation (phospho-Met, phospho-c-Src) and cell proliferation/apoptosis markers (Ki67).
Main Results:
- DA-Src expression conferred significant resistance to erlotinib.
- DA-Src upregulated phospho-Met in a ligand-independent manner.
- Inhibiting c-Met or c-Src, but not EGFR, restored erlotinib sensitivity.
- Activated c-Src levels correlated with erlotinib resistance in HNSCC cell lines.
Conclusions:
- Ligand-independent c-Met activation, driven by c-Src, provides an alternative survival pathway contributing to erlotinib resistance in HNSCC.
- Targeting c-Met or c-Src in combination with erlotinib may enhance treatment efficacy in HNSCC patients with activated c-Src.
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