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Mutant Met-mediated transformation is ligand-dependent and can be inhibited by HGF antagonists
P Michieli1, C Basilico, S Pennacchietti
1Department of Molecular Oncology, Institute for Cancer Research and Treatment (IRCC), University of Torino Medical School, Strada Provinciale 142, Km 3.95, I-10060 Candiolo (Torino), Italy.
Abstract:
Mutations in the genes encoding for Met, Ret and Kit receptor tyrosine kinases invariably result in increased kinase activity and in the acquisition of transforming potential. However, the requirement of receptor ligands for the transformation process is still unclear. We have investigated the role of hepatocyte growth factor (HGF), the high-affinity ligand for Met, in mutant Met-mediated cell transformation. We provide evidence that the transforming potential displayed by mutant forms of Met found in human cancer is not only sensitive but entirely dependent on the presence of HGF, by showing that mutant Met transforms NIH3T3 fibroblasts, which produce endogenous HGF, but is not able to transform epithelial cells, unless exogenous HGF is supplied. Accordingly, mutant Met-induced transformation of NIH3T3 cells can be inhibited by HGF antagonists and increased by HGF stimulation. We also show that an engineered Met receptor which contains an oncogenic mutation but is impaired in its ability to bind HGF completely loses its transforming activity, which can be rescued by causing receptor dimerization using a monoclonal antibody. These results indicate that point mutations resulting in Met kinase activation are necessary but not sufficient to cause cell transformation, the latter being dependent on ligand-induced receptor dimerization. They also suggest that mutant Met-driven tumour growth depends on the availability and tissue distribution of active HGF, and provide proof-of-concept for the treatment of mutant-Met related pathologies by HGF-antagonizing drugs.
Insights
Mutant Met receptor tyrosine kinase activity requires hepatocyte growth factor (HGF) for cell transformation. Ligand-induced dimerization is crucial for oncogenic Met activity, suggesting HGF antagonists as potential cancer therapeutics.
Area of Science:
- Molecular Biology
- Oncology
- Cell Signaling
Background:
- Mutations in receptor tyrosine kinases like Met, Ret, and Kit enhance kinase activity and cellular transformation.
- The necessity of receptor ligands for this transformation process remains incompletely understood.
Purpose of the Study:
- To investigate the role of hepatocyte growth factor (HGF) in mutant Met-mediated cell transformation.
- To determine if HGF is essential for the transforming potential of oncogenic Met mutations found in human cancers.
Main Methods:
- Utilizing NIH3T3 fibroblasts and epithelial cells to assess mutant Met transformation.
- Employing HGF antagonists and stimulation to modulate transformation.
- Engineering a Met receptor with impaired HGF binding and using monoclonal antibodies for dimerization induction.
Main Results:
- Mutant Met transforms NIH3T3 cells (endogenous HGF producers) but not epithelial cells without exogenous HGF.
- HGF antagonists inhibit, while HGF stimulation enhances, mutant Met-induced transformation.
- An engineered Met receptor with defective HGF binding lost transforming activity, which was restored by antibody-induced dimerization.
Conclusions:
- Met kinase activation mutations are necessary but insufficient for cell transformation; ligand-induced dimerization is essential.
- Mutant Met-driven tumor growth is dependent on HGF availability and distribution.
- HGF-antagonizing drugs represent a potential therapeutic strategy for mutant-Met related pathologies.