Related Experiment Video
Updated: May 15, 2025

Chemical Inactivation of the E3 Ubiquitin Ligase Cereblon by Pomalidomide-based Homo-PROTACs
Published on: May 15, 2019
Elimusertib, a Novel ATR Inhibitor, Induces Anti-tumor Effects through Replication Catastrophe in Breast Cancers
Mudong Kim1, Ahrum Min1,2, Sohyeon Kim1
1Cancer Research Institute, Seoul National University, Seoul, Korea.
Purpose:
Sustained cell proliferation and cell cycle acceleration in cancer cells inherently increase DNA damage, which interferes with homeostatic replication and transcription. Ataxia telangiectasia and Rad3-related (ATR) is crucial for initiation of the DNA damage response, and ATR inhibitors, such as elimusertib, induce increased replication stress and DNA damage. We investigated the anti-tumor effects of elimusertib and its mechanism of action in relation to replication stress.
Materials And Methods:
Anti-tumor effects were evaluated by MTT assay and colony formation assay in breast cancer cell lines in vitro, in breast cancer cell xenografts in vivo, and in patient-derived xenograft models. Cell cycle was assessed by flow cytometry and BrdU assay was used to measure replicating cells and S-phase progression. Alkaline and neutral comet assay was used to measure single and double-stranded DNA damages, respectively.
Results:
Elimusertib delayed S-phase progression in MDA-MB-453 and MDA-MB-231 cells and induced caspase-7-dependent apoptosis. Furthermore, the increase in sub-G1 population in the fluorescence-activated cell sorting analysis and Annexin V assay also confirmed apoptotic cell death. In the BrdU assay, single-stranded DNA (ssDNA) increased in sensitive cells and aberrant ssDNA induced DNA damage in S-phase and eventually caused replication catastrophe. Finally, these anti-tumor effects were proven in in vivo xenograft and patient-derived xenograft models.
Conclusion:
Elimusertib had anti-tumor effects and induced replication catastrophe in breast cancer cells with a high replication rate. Moreover, cells under high DNA replication stress were sensitive to elimusertib. Further studies and treatment strategies with elimusertib are warranted for cancers with a high replication rate.
Insights
Elimusertib, an ATR inhibitor, effectively combats breast cancer by inducing replication catastrophe and apoptosis in rapidly proliferating cells. This drug shows promise for treating cancers characterized by high replication rates and significant DNA replication stress.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cancer cells exhibit accelerated proliferation, leading to increased DNA damage and replication stress.
- Ataxia telangiectasia and Rad3-related (ATR) kinase is a key regulator of the DNA damage response.
- ATR inhibitors, like elimusertib, are designed to exploit cancer cell vulnerabilities by inducing replication stress.
Purpose of the Study:
- To investigate the anti-tumor efficacy of elimusertib.
- To elucidate the mechanism of action of elimusertib concerning replication stress in cancer cells.
Main Methods:
- In vitro studies using MTT and colony formation assays on breast cancer cell lines.
- In vivo studies utilizing breast cancer xenografts and patient-derived xenograft models.
- Cell cycle analysis via flow cytometry, BrdU assays for DNA replication, and comet assays for DNA damage assessment.
Main Results:
- Elimusertib inhibited S-phase progression and induced apoptosis (caspase-7 dependent) in sensitive breast cancer cells.
- Increased single-stranded DNA (ssDNA) was observed, leading to DNA damage and replication catastrophe.
- Significant anti-tumor effects were confirmed in both xenograft and patient-derived xenograft models.
Conclusions:
- Elimusertib demonstrates potent anti-tumor activity against breast cancer cells with high replication rates.
- Cancer cells experiencing high DNA replication stress are particularly sensitive to elimusertib.
- Further research into elimusertib and its therapeutic strategies is warranted for high-replication cancers.
More Related Videos
06:00Through the Looking Glass: Time-lapse Microscopy and Longitudinal Tracking of Single Cells to Study Anti-cancer Therapeutics
Published on: May 14, 2016
12:28Establishing Cell Lines Overexpressing DR3 to Assess the Apoptotic Response to Anti-mitotic Therapeutics
Published on: January 11, 2019
Related Concept Videos
Targeted Cancer Therapies
There are several types of targeted therapies against...
Treatment Resistant Cancers
DNA Damage can Stall the Cell Cycle
Mitogens and the Cell Cycle
Inhibition of Cdk Activity
Replicative Cell Senescence