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Published on: March 20, 2021
Nuclear pCHK1 as a potential biomarker of increased sensitivity to ATR inhibition
Vignesh Sundararajan1, Tuan Zea Tan1,2, Diana Lim3
1Cancer Science Institute of Singapore, National University of Singapore, Singapore, Singapore.
Abstract:
Excessive genomic instability coupled with abnormalities in DNA repair pathways induces high levels of 'replication stress' when cancer cells propagate. Rather than hampering cancer cell proliferation, novel treatment strategies are turning their attention towards targeting cell cycle checkpoint kinases (such as ATR, CHK1, WEE1, and others) along the DNA damage response and replicative stress response pathways, thereby allowing unrepaired DNA damage to be carried forward towards mitotic catastrophe and apoptosis. The selective ATR kinase inhibitor elimusertib (BAY 1895344) has demonstrated preclinical and clinical monotherapy activity; however, reliable predictive biomarkers of treatment benefit are still lacking. In this study, using gene expression profiling of 24 cell lines from different cancer types and in a panel of ovarian cancer cell lines, we found that nuclear-specific enrichment of checkpoint kinase 1 (CHK1) correlated with increased sensitivity to elimusertib. Using an advanced multispectral imaging system in subsequent cell line-derived xenograft specimens, we showed a trend between nuclear phosphorylated CHK1 (pCHK1) staining and increased sensitivity to the ATR inhibitor elimusertib, indicating the potential value of pCHK1 expression as a predictive biomarker of ATR inhibitor sensitivity. © 2022 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.
Insights
Checkpoint kinase 1 (CHK1) enrichment predicts sensitivity to the ATR inhibitor elimusertib. Nuclear phosphorylated CHK1 (pCHK1) may serve as a predictive biomarker for this cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Cancer cells exhibit genomic instability and DNA repair defects, leading to replication stress.
- Targeting cell cycle checkpoint kinases (e.g., ATR, CHK1) is a novel cancer treatment strategy to induce mitotic catastrophe.
- The ATR inhibitor elimusertib shows promise, but predictive biomarkers for treatment response are needed.
Purpose of the Study:
- To identify predictive biomarkers for the ATR inhibitor elimusertib.
- To investigate the correlation between checkpoint kinase 1 (CHK1) expression and sensitivity to elimusertib.
Main Methods:
- Gene expression profiling of 24 cancer cell lines and ovarian cancer cell lines.
- Multispectral imaging of cell line-derived xenograft specimens.
- Assessment of nuclear-specific CHK1 and phosphorylated CHK1 (pCHK1) staining.
Main Results:
- Nuclear-specific enrichment of CHK1 correlated with increased sensitivity to elimusertib.
- A trend was observed between nuclear pCHK1 staining and enhanced sensitivity to elimusertib in xenograft models.
Conclusions:
- Nuclear CHK1 enrichment is a potential indicator of elimusertib sensitivity.
- pCHK1 expression shows potential as a predictive biomarker for ATR inhibitor therapy in cancer treatment.

