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</script>Epithelial Membrane Protein-2 (EMP2) Activates Src Protein and Is a Novel Therapeutic Target for Glioblastoma
Epithelial Membrane Protein-2 (EMP2) Activates Src Protein and Is a Novel Therapeutic Target for Glioblastoma
Despite recent advances in molecular classification, surgery, radiotherapy, and targeted therapies, the clinical outcome of patients with malignant brain tumors remains extremely poor. In this study, we have identified the tetraspan protein epithelial membrane protein-2 (EMP2) as a potential target for glioblastoma (GBM) killing. EMP2 had low or undetectable expression in normal brain but was highly expressed in GBM as 95% of patients showed some expression of the protein. In GBM cells, EMP2 enhanced tumor growth in vivo in part by up-regulating αvβ3 integrin surface expression, activating focal adhesion kinase and Src kinases, and promoting cell migration and invasion. Consistent with these findings, EMP2 expression significantly correlated with activated Src kinase in patient samples and promoted tumor cell invasion using intracranial mouse models. As a proof of principle to determine whether EMP2 could serve as a target for therapy, cells were treated using specific anti-EMP2 antibody reagents. These reagents were effective in killing GBM cells in vitro and in reducing tumor load in subcutaneous mouse models. These results support the role of EMP2 in the pathogenesis of GBM and suggest that anti-EMP2 treatment may be a novel therapeutic treatment.
- University of California System United States
- University of Chicago United States
- University of California, Los Angeles United States
- UCLA Jonsson Comprehensive Cancer Center United States
- University of California, San Diego United States
Biochemistry & Molecular Biology, Biomedical and clinical sciences, Tetraspanins, Oncology and Carcinogenesis, Tumor Marker, 610, Medical and Health Sciences, Cell Line, Mice, Rare Diseases, Cell Line, Tumor, 616, Animals, Humans, Molecular Targeted Therapy, Cancer, Cell Proliferation, Neoplastic, EMP2, Tumor, Membrane Glycoproteins, Biomedical and Clinical Sciences, Neurosciences, Cell Invasion, Biological Sciences, Brain Disorders, Brain Cancer, Enzyme Activation, Gene Expression Regulation, Neoplastic, Biological sciences, Orphan Drug, Phenotype, src-Family Kinases, Gene Expression Regulation, Chemical sciences, 5.1 Pharmaceuticals, Focal Adhesion Kinase 1, Chemical Sciences, Female, Biochemistry and Cell Biology, Immunotherapy, Glioblastoma, Biotechnology
Biochemistry & Molecular Biology, Biomedical and clinical sciences, Tetraspanins, Oncology and Carcinogenesis, Tumor Marker, 610, Medical and Health Sciences, Cell Line, Mice, Rare Diseases, Cell Line, Tumor, 616, Animals, Humans, Molecular Targeted Therapy, Cancer, Cell Proliferation, Neoplastic, EMP2, Tumor, Membrane Glycoproteins, Biomedical and Clinical Sciences, Neurosciences, Cell Invasion, Biological Sciences, Brain Disorders, Brain Cancer, Enzyme Activation, Gene Expression Regulation, Neoplastic, Biological sciences, Orphan Drug, Phenotype, src-Family Kinases, Gene Expression Regulation, Chemical sciences, 5.1 Pharmaceuticals, Focal Adhesion Kinase 1, Chemical Sciences, Female, Biochemistry and Cell Biology, Immunotherapy, Glioblastoma, Biotechnology
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citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).35 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Top 10% influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Top 10% impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Top 10%
