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July 1, 2006Cancer Research135 citations

Non–Small-Cell Lung Cancer and Ba/F3 Transformed Cells Harboring the ERBB2 G776insVG/C Mutation Are Sensitive to the Dual-Specific Epidermal Growth Factor Receptor and ERBB2 Inhibitor HKI-272

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TSTakeshi ShimamuraUniversity of Illinois ChicagoHJHongbin JiFudan UniversityYMYuko MinamiNational Hospital Organization

Key Points

  • This research aims to investigate the sensitivity of non-small-cell lung cancer cells with the ERBB2 G776insV_G/C mutation to HKI-272.
  • Tested the effect of HKI-272 on ERBB2-mutant NCI-H1781 cell line regarding proliferation and apoptosis.
  • Observed autophosphorylation inhibition of ERBB2 and EGFR upon HKI-272 treatment.
  • Utilized Ba/F3 murine pro-B cells engineered to express mutant ERBB2 to assess sensitivity to HKI-272.
  • HKI-272 treatment induced G(1) arrest and apoptotic cell death in ERBB2-mutant cells.
  • Inhibition of autophosphorylation of both ERBB2 and EGFR was achieved with HKI-272.
  • Ba/F3 cells expressing ERBB2 became independent of interleukin-3 and were sensitive to HKI-272.

Abstract

Mutation-specific cancer therapy has shown promising clinical efficacy. In non-small-cell lung cancer (NSCLC), the presence of mutations in the epidermal growth factor receptor (EGFR) tyrosine kinase correlates with clinical response to small-molecule tyrosine kinase inhibitors. Here, we show that cells harboring the G776insVG/C mutation in the related ERBB2 tyrosine kinase (also known as HER2 or Neu), present in a small percentage of NSCLCs, are sensitive to HKI-272, an irreversible dual-specific kinase inhibitor targeting both EGFR and ERBB2. In the ERBB2-mutant NCI-H1781 cell line, HKI-272 treatment inhibited proliferation by induction of G (1) arrest and apoptotic cell death. Furthermore, HKI-272 abrogated autophosphorylation of both ERBB2 and EGFR. Finally, Ba/F3 murine pro-B cells, engineered to express mutant ERBB2, became independent of interleukin-3 and sensitive to HKI-272. Thus, the subset of NSCLC patients with tumors carrying the ERBB2 G776insVG/C mutation may benefit from treatment with HKI-272.

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Cite This Study

Shimamura et al. (2006) studied this question.

synapsesocial.com/papers/69ecad6007a42890fa8fe5aehttps://doi.org/10.1158/0008-5472.can-06-0971
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