EGFRvIII mutations can emerge as late and heterogenous events in glioblastoma development and promote angiogenesis through Src activation.

Neuro Oncol

Department of Biomedicine, University of Bergen, Norway (E.E., G.V.R., K.M.T., O.K., T.T., K.V., J.A.H., J.V.J., R.J., H.S.S., L.L., T.D., P.Ø.E., R.B., H.M.); KG Jebsen Brain Tumor Research Center, University of Bergen, Norway (E.E., G.V.R., K.M.T., O.K., K.V., J.A.H., J.V.J., T.D., P. Ø.E., S.P.N., R.B., H.M.); Department of Clinical Science, University of Bergen, Norway (S.K.); Department of Oncology, Haukeland University Hospital, Bergen, Norway (S.K.); Norlux Neuro-Oncology Laboratory, Department of Oncology, Luxembourg Institute of Health, Luxembourg (O.K., S.F., S.P.N., R.B.); Centre for Evolution and Cancer, The Institute of Cancer Research, London, UK (A.S.); Department of Clinical Pharmacy, Institute of Pharmacy, Ernst-Moritz-Arndt-University, Greifswald, Germany (S.F., C.A.R.); Department of Neurooncology, University Hospital Heidelberg, Germany (G.S., F.W.); Institute of Scientific Instruments, ASCR, Brno, Czech Republic (R.J.); Edinger-Intsitute, Goethe-University Medical School, Frankfurt am Main, Germany (P.N.H.); Department of Pathology, Haukeland University Hospital, Bergen, Norway (J.A.H., H.M.); Department of Clinical Neurosciences, University of Cambridge, UK (S.G.P., C.W.); Statistics and Computational Biology Laboratory, University of Cambridge, UK (I.S.); Neuro Clinic, Haukeland University Hospital, Bergen, Norway; Department of Experimental Neurology, Charité - Universitätsmedizin Berlin, Germany (P.E.); Department of Systems Medicine, University of Rome «Tor Vergata», Rome, Italy (G.G.); INSERM U1029 - University of Bordeaux, Allée Geoffroy St. Hilaire, Pessac, France (T.D.); Department of Neurosurgery, Haukeland University Hospital, Bergen, Norway (M.L.-J., P. Ø.E.).

Published: December 2016

Background: Amplification of the epidermal growth factor receptor (EGFR) and its mutant EGFRvIII are among the most common genetic alterations in glioblastoma (GBM), the most frequent and most aggressive primary brain tumor.

Methods: In the present work, we analyzed the clonal evolution of these major EGFR aberrations in a small cohort of GBM patients using a unique surgical multisampling technique. Furthermore, we overexpressed both receptors separately and together in 2 patient-derived GBM stem cell lines (GSCs) to analyze their functions in vivo in orthotopic xenograft models.

Results: In human GBM biopsies, we identified EGFR amplification as an early event because EGFRvIII mutations emerge from intratumoral heterogeneity later in tumor development. To investigate the biological relevance of this distinct developmental pattern, we established experimental model systems. In these models, EGFR tumor cells showed activation of classical downstream signaling pathways upon EGF stimulation and displayed enhanced invasive growth without evidence of angiogenesis in vivo. In contrast, EGFRvIII tumors were driven by activation of the prototypical Src family kinase c-Src that promoted VEGF secretion leading to angiogenic tumor growth.

Conclusions: The presented work shows that sequential EGFR amplification and EGFRvIII mutations might represent concerted evolutionary events that drive the aggressive nature of GBM by promoting invasion and angiogenesis via distinct signaling pathways. In particular, c-SRC may be an attractive therapeutic target for tumors harboring EGFRvIII as we identified this protein specifically mediating angiogenic tumor growth downstream of EGFRvIII.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5791772PMC
http://dx.doi.org/10.1093/neuonc/now113DOI Listing

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