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
Abstract:
The goal of this study was to characterize the effects of non-small cell lung carcinoma (NSCLC)-associated mutations in epidermal growth factor receptor (EGFR/ErbB1) and HER2 (ErbB2) on interactions with the dual tyrosine kinase inhibitor lapatinib. Biochemical studies show that commonly observed variants of EGFR [G719C, G719S, L858R, L861Q, and Delta746-750 (del15)] are enzyme activating, increasing the tyrosine kinase V(max) and increasing the K(m)((app)) for ATP. The point mutations G719C and L861Q had minor effects on lapatinib K(i)s, whereas EGFR mutations L858R and del15 had a higher K(i) for lapatinib than wild-type EGFR. Structural analysis of wild-type EGFR-lapatinib complexes and modeling of the EGFR mutants were consistent with these data, suggesting that loss of structural flexibility and possible stabilization of the active-like conformation could interfere with lapatinib binding, particularly to the EGFR deletion mutants. Furthermore, EGFR deletion mutants were relatively resistant to lapatinib-mediated inhibition of receptor autophosphorylation in recombinant cells expressing the variants, whereas EGFR point mutations had a modest or no effect. Of note, EGFR T790M, a receptor variant found in patients with gefitinib-resistant NSCLC, was also resistant to lapatinib-mediated inhibition of receptor autophosphorylation. Two HER2 insertional variants found in NSCLC were less sensitive to lapatinib inhibition than two HER2 point mutants. The effects of lapatinib on the proliferation of human NSCLC tumor cell lines expressing wild-type or variant EGFR and HER2 cannot be explained solely on the basis of the biochemical activity or receptor autophosphorylation in recombinant cells. These data suggest that cell line genetic heterogeneity and/or multiple determinants modulate the role played by EGFR/HER2 in regulating cell proliferation.
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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