PubMed · 2003 · 237 citations · 33 references
Breast OncologyPathologyMet ReceptorCancer BiologyTumor BiologyBreast Cancer ProgressionFibroblast Growth FactorRadiation OncologyCancer ResearchHealth SciencesMet ActivationMedicineLiver PhysiologyTissue Microarray AnalysisCell BiologyTumor MicroenvironmentEndocrine-related CancerPathway ComponentsBreast CancerOncologyCancer GrowthNode-negative Breast Cancer
Numerous studies have demonstrated that overexpression of Met, the hepatocyte growth factor(HGF) receptor, plays an important role in tumorigenesis. Met activation can either occur through ligand-independent or -dependent mechanisms, both of which are mediated by a series of proteases and modulators. We studied the protein expression of several components of the HGF/Met pathway on a cohort of 330 node-negative breast carcinomas using a tissue microarray annotated with 30-year, disease-specific patient follow-up data. We examined HGF, matriptase (an activator of HGF expressed on mammary epithelial cell surfaces), HAI-I (the cognate inhibitor of matriptase), and the Met receptor itself. Our studies demonstrate tight correlation between the expression of HGF, matriptase, and Met in breast carcinoma. High-level expression of Met, matriptase, and HAI-I were associated with poor patient outcome. Met and HAI-I showed independent prognostic value when compared with traditional breast markers in a multivariate analysis. Intriguingly, antibodies against the intracellular but not the extracellular domain of Met were prognostic, suggesting that overexpression of the cytoplasmic-tail of Met, perhaps through cleavage or truncating mutation, may play an important role in breast cancer progression.
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Molecular cloning of a new transforming gene from a chemically transformed human cell line
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Absence of host plasminogen activator inhibitor 1 prevents cancer invasion and vascularization
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