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Published on: July 21, 2018
A selective small molecule inhibitor of c-Met, PHA-665752, reverses lung premalignancy induced by mutant K-ras
Yanan Yang1, Marie Wislez, Nobukazu Fujimoto
1Departments of Thoracic/Head and Neck Medical Oncology, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
Abstract:
The c-Met receptor tyrosine kinase has been implicated in cellular transformation induced by mutant Ras, a commonly activated proto-oncogene in non-small cell lung cancer (NSCLC). However, the role of c-Met has not been defined in K-ras-mutant NSCLC, a disease for which no effective targeted therapeutic options currently exist. To acquire a greater understanding of its role, we used genetic and pharmacologic approaches to inhibit c-Met in mice and cultured cells. In Kras(LA1) mice, which develop premalignant lung lesions that progress to multifocal lung adenocarcinomas owing to somatic mutations in K-ras, c-Met was expressed in multiple cell types within premalignant lung lesions, and high concentrations of HGF were detected in bronchoalveolar lavage samples. Short-term treatment with PHA-665752, a c-Met inhibitor, decreased the numbers of premalignant lung lesions and induced apoptosis in tumor cells and vascular endothelial cells within lesions. In cell culture, PHA-665752 induced apoptosis of a lung adenocarcinoma cell line derived from Kras(LA1) mice (LKR-13) and a murine lung endothelial cell line (MEC). c-Met depletion by siRNA transfection induced apoptosis of MECs but not LKR-13 cells. Collectively, these findings suggest that apoptosis was an on-target effect of PHA-665752 in MECs but not in LKR-13 cells. We conclude that PHA-665752 inhibited lung tumorigenesis in Kras(LA1) mice and may provide a novel therapeutic approach to the prevention of K-ras-mutant NSCLC.
Insights
Inhibition of c-Met receptor tyrosine kinase with PHA-665752 reduced lung tumor development in a mouse model of K-ras-mutant non-small cell lung cancer (NSCLC). This suggests c-Met inhibition as a potential therapeutic strategy for NSCLC.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Mutant Ras is a common oncogene in non-small cell lung cancer (NSCLC).
- The role of c-Met receptor tyrosine kinase in K-ras-mutant NSCLC remains unclear, despite its known involvement in cellular transformation.
- Targeted therapies for K-ras-mutant NSCLC are limited.
Purpose of the Study:
- To investigate the role of c-Met in K-ras-mutant lung tumorigenesis.
- To evaluate the therapeutic potential of c-Met inhibition in K-ras-mutant NSCLC.
Main Methods:
- Genetic and pharmacologic inhibition of c-Met in Kras(LA1) mice and cultured lung cancer cells.
- Treatment with PHA-665752, a c-Met inhibitor.
- Analysis of premalignant lung lesions, tumor cells, and vascular endothelial cells.
- Cell culture studies using lung adenocarcinoma (LKR-13) and murine endothelial (MEC) cell lines.
- c-Met depletion using siRNA.
Main Results:
- c-Met was expressed in premalignant lung lesions in Kras(LA1) mice, with high HGF levels detected.
- PHA-665752 treatment reduced premalignant lesions and induced apoptosis in tumor and endothelial cells.
- PHA-665752 induced apoptosis in LKR-13 and MEC cell lines.
- c-Met depletion induced apoptosis in MECs but not LKR-13 cells, suggesting PHA-665752's effect on LKR-13 cells was not solely via c-Met.
Conclusions:
- PHA-665752 inhibited lung tumorigenesis in a K-ras-mutant mouse model.
- c-Met inhibition may offer a novel therapeutic strategy for preventing or treating K-ras-mutant NSCLC.
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