Checkpoint kinase 1 protein expression indicates sensitization to therapy by checkpoint kinase 1 inhibition in
Svetlana Grabauskiene1, Edward J Bergeron1, Guoan Chen1
1Section of Thoracic Surgery, Department of Surgery, University of Michigan Medical School, Ann Arbor, Michigan.
Background:
When presenting with advanced stage disease, lung cancer patients have <5% 5-y survival. The overexpression of checkpoint kinase 1 (CHK1) is associated with poorer outcomes and may contribute to therapy resistance. Targeting CHK1 with small-molecule inhibitors in p53 mutant tumors might improve the effectiveness of chemotherapy and radiotherapy in non-small cell lung cancer (NSCLC).
Methods:
We evaluated CHK1 messenger RNA and protein levels in multiple NSCLC cell lines. We assessed cell line sensitization to gemcitabine, pemetrexed, and radiotherapy by CHK1 inhibition with the small molecule AZD7762 using proliferation and clonogenic cell survival assays. We analyzed CHK1 signaling by Western blotting to confirm that AZD7762 inhibits CHK1.
Results:
We selected two p53 mutant NSCLC cell lines with either high (H1299) or low (H1993) CHK1 levels for further analysis. We found that AZD7762 sensitized both cell lines to gemcitabine, pemetrexed, and radiotherapy. Chemosensitization levels were greater, however, for the higher CHK1 protein expressing cell line, H1299, when compared with H1993. Furthermore, analysis of the CHK1 signaling pathway showed that H1299 cells have an increased dependence on the CHK1 pathway in response to chemotherapy. There was no increased sensitization to radiation in H1299 versus H1993.
Conclusions:
CHK1 inhibition by AZD7762 preferentially sensitizes high CHK1 expressing cells, H1299, to anti-metabolite chemotherapy as compared with low CHK1 expressing H1993 cells. Thus, CHK1 inhibitors may improve the efficacy of standard lung cancer therapies, especially for those subgroups of tumors harboring higher expression levels of CHK1 protein.
Insights
Checkpoint kinase 1 (CHK1) inhibition with AZD7762 improves chemotherapy effectiveness in non-small cell lung cancer (NSCLC) cell lines. High CHK1 expressing cells showed greater sensitization to chemotherapy, suggesting a targeted therapeutic approach.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Advanced stage non-small cell lung cancer (NSCLC) has a poor prognosis with less than 5% 5-year survival.
- Overexpression of checkpoint kinase 1 (CHK1) correlates with worse outcomes and therapy resistance in lung cancer.
- Targeting CHK1 in p53 mutant NSCLC may enhance chemotherapy and radiotherapy efficacy.
Purpose of the Study:
- To investigate the role of CHK1 in non-small cell lung cancer (NSCLC) cell line response to chemotherapy and radiotherapy.
- To evaluate the efficacy of the CHK1 inhibitor AZD7762 in sensitizing NSCLC cells to standard treatments.
- To determine if CHK1 expression levels influence treatment response.
Main Methods:
- Assessed CHK1 mRNA and protein levels in NSCLC cell lines.
- Inhibited CHK1 using the small molecule AZD7762.
- Evaluated sensitization to gemcitabine, pemetrexed, and radiotherapy using proliferation and clonogenic survival assays.
- Confirmed CHK1 inhibition via Western blotting.
Main Results:
- AZD7762 sensitized both high (H1299) and low (H1993) CHK1 expressing p53 mutant NSCLC cell lines to gemcitabine, pemetrexed, and radiotherapy.
- Higher CHK1 expressing cells (H1299) exhibited greater chemosensitization compared to lower expressing cells (H1993).
- H1299 cells showed increased dependence on the CHK1 pathway during chemotherapy, but no enhanced radiation sensitization was observed.
Conclusions:
- CHK1 inhibition by AZD7762 preferentially sensitizes high CHK1 expressing NSCLC cells to anti-metabolite chemotherapy.
- CHK1 inhibitors hold potential for improving standard lung cancer therapies, particularly in tumors with elevated CHK1 protein levels.
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