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Glioblastoma-derived epidermal growth factor receptor carboxyl-terminal deletion mutants are transforming and are sensitive to EGFR-directed therapies

  • Jeonghee Cho
  • , Sandra Pastorino
  • , Qing Zeng
  • , Xiaoyin Xu
  • , William Johnson
  • , Scott Vandenberg
  • , Roel Verhaak
  • , Andrew D. Cherniack
  • , Hideo Watanabe
  • , Amit Dutt
  • , Jihyun Kwon
  • , Ying S. Chao
  • , Robert C. Onofrio
  • , Derek Chiang
  • , Yuki Yuza
  • , Santosh Kesari
  • , Matthew Meyerson

Research output: Contribution to journalArticlepeer-review

67 Scopus citations

Abstract

Genomic alterations of the epidermal growth factor receptor (EGFR) gene play a crucial role in pathogenesis of glioblastoma multiforme (GBM). By systematic analysis of GBM genomic data, we have identified and characterized a novel exon 27 deletion mutation occurring within the EGFR carboxyl-terminus domain (CTD), in addition to identifying additional examples of previously reported deletion mutations in this region. We show that the GBM-derived EGFRCTD deletion mutants are able to induce cellular transformation in vitro and in vivo in the absence of ligand and receptor autophosphorylation. Treatment with the EGFR-targeted monoclonal antibody, cetuximab, or the small molecule EGFR inhibitor, erlotinib, effectively impaired tumorigenicity of oncogenic EGFR CTD deletion mutants. Cetuximab in particular prolonged the survival of intracranially xenografted mice with oncogenic EGFRCTDdeletion mutants, compared with untreated control mice. Therefore, we propose that erlotinib and, especially, cetuximab treatment may be a promising therapeutic strategy in GBM patients harboring EGFR CTD deletion mutants.

Original languageEnglish
Pages (from-to)7587-7596
Number of pages10
JournalCancer Research
Volume71
Issue number24
DOIs
StatePublished - Dec 15 2011

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