Abstract

BackgroundThe EGFR tyrosine kinase inhibitor gefitinib is used in therapy for non-small-cell lung cancer (NSCLC). However, its application is limited by resistance-accelerated disease progression, which is accompanied by the epithelial-to-mesenchymal transition (EMT). In the present study, we performed multiple expression analyses of microRNAs (miRNAs) and quantified the expression of several related EMT players in gefitinib-resistant NSCLC cells.Methods and resultsTo establish gefitinib-resistant NSCLC cells, gefitinib-sensitive HCC827 cells, which exhibit an in-frame deletion [E746-A750] in EGFR exon 19, were exposed to gefitinib for at least 1.5 months. Next, to profile “gefitinib-resistant HCC827 (HCC827GR)” cells, which have a secondary T790M mutation in EGFR exon 20, a miRNA array analysis was performed in HCC827 and HCC827GR cells. The greatest differences were seen in the levels of miR-155 and miR-200c, which essentially disappeared in HCC827GR cells. In addition to these reductions, the levels of smad2 and zeb1, which are both key players in EMT and targets for miR-155 and miR-200c, respectively, were dramatically increased in HCC827GR cells. In HCC827GR cells, the expression of epithelial-cadherin (E-cadherin) was greatly reduced with repressive histone modifications, whereas vimentin, which is expressed in mesenchymal cells, was dramatically increased with active histone modifications. In another gefitinib-resistant NSCLC cell line (H1975 cells), similar to the findings in HCC827GR cells, both miR-155 and miR-200c were absent, and the EMT was induced along with epigenetic modifications. Interestingly, the inhibition of both miR-155 and miR-200c in HCC827 cells without gefitinib induced significant increases in smad2 and zeb1 along with a dramatic decrease in E-cadherin and a slight increase in vimentin. Furthermore, although the inhibition of these miRNAs in HCC827 cells decreased gefitinib sensitivity, this dual-inhibition in HCC827 cells without gefitinib did not produce a secondary T790M mutation in EGFR exon 20.Conclusion and implicationsThese results suggest that chronic treatment of NSCLC cells with gefitinib changes the expression of miRNAs, including dramatic reductions in miR-155 and miR-200c along with an EGFR mutation. Furthermore, this depletion of miR-155 and miR-200c may be associated with the EMT along with histone modifications, and may contribute to the decrease in the sensitivity to gefitinib independent of a secondary EGFR mutation.

Highlights

  • The epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor gefitinib is used in therapy for non-small-cell lung cancer (NSCLC)

  • These results suggest that chronic treatment of NSCLC cells with gefitinib changes the expression of miRNAs, including dramatic reductions in miR-155 and miR-200c along with an EGFR mutation

  • The application of gefitinib is limited by the emergence of acquired drug resistance, which is mainly mediated by a secondary T790M mutation in EGFR [3, 4]

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Summary

Methods

To establish gefitinib-resistant NSCLC cells, gefitinib-sensitive HCC827 cells, which exhibit an in-frame deletion [E746-A750] in EGFR exon 19, were exposed to gefitinib for at least 1.5 months. Establishment of the gefitinib-resistant NSCLC cell line HCC827GR. The human NSCLC cell line HCC827 (American Type Culture Collection Co., MD, USA) was exposed to 1 μM of gefitinib for 48 h in RPMI-1640 Medium HEPES Modification (SigmaAldrich Co., MO, USA) containing 10% fetal bovine serum (FBS; InvitrogenTM Thermo Fisher Scientific Inc., MA, USA) and 1% penicillin-streptomycin (P/S; InvitrogenTM Thermo Fisher Scientific Inc.). The cells were washed and cultured in drug-free medium until surviving cells were 80% confluent. These cells were re-exposed to increasing concentrations of gefitinib, from 1 to 5 μM. For all in vitro studies, resistant cells were eventually cultured in drug-free medium for at least 1 week to eliminate gefitinib. Gefitinib-resistant HCC827 cells are referred to here as HCC827GR cells

Results
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