Impact of common epidermal growth factor receptor and HER2 variants on receptor activity and inhibition by lapatinib

Tona M Gilmer1, Louann Cable, Krystal Alligood

  • 1Department of Translational Medicine, GlaxoSmithKline, 5 Moore Drive, Research Triangle Park, NC 27709, USA. tona.m.gilmer@gsk.com

Cancer Research
|January 18, 2008
PubMed

Insights

Non-small cell lung carcinoma (NSCLC) mutations in EGFR and HER2 impact lapatinib effectiveness. Some EGFR mutations confer resistance to lapatinib, affecting its therapeutic potential in NSCLC treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Non-small cell lung carcinoma (NSCLC) is a major cause of cancer-related deaths.
  • Epidermal growth factor receptor (EGFR) and HER2 (ErbB2) are key targets in NSCLC therapy.
  • Lapatinib is a dual tyrosine kinase inhibitor targeting EGFR and HER2.

Purpose of the Study:

  • To investigate how NSCLC-associated mutations in EGFR and HER2 affect lapatinib's inhibitory activity.
  • To understand the biochemical and cellular mechanisms underlying lapatinib resistance in NSCLC.

Main Methods:

  • Biochemical assays to determine enzyme kinetics (Vmax, Km, Ki) of wild-type and mutant EGFR/HER2 with lapatinib.
  • Structural analysis and molecular modeling of EGFR-lapatinib interactions.
  • Cell-based assays measuring receptor autophosphorylation and cell proliferation in NSCLC cell lines expressing EGFR/HER2 variants.

Main Results:

  • EGFR activating mutations (G719C, G719S, L858R, L861Q, Delta746-750) increased Vmax and Km(app) for ATP.
  • EGFR mutations L858R and Delta746-750 showed higher Ki for lapatinib than wild-type EGFR.
  • EGFR deletion mutants and the T790M variant exhibited resistance to lapatinib-mediated autophosphorylation inhibition.
  • HER2 insertional variants were less sensitive to lapatinib than HER2 point mutants.
  • Cell proliferation inhibition by lapatinib could not be solely explained by biochemical activity or autophosphorylation.

Conclusions:

  • NSCLC-associated EGFR and HER2 mutations differentially affect lapatinib binding and inhibition.
  • Structural changes in mutant receptors may impede lapatinib binding, leading to resistance.
  • EGFR T790M and certain HER2 variants display reduced sensitivity to lapatinib.
  • Cell line heterogeneity and other factors likely modulate lapatinib's efficacy in NSCLC proliferation.

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