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Synergistic lethality between auranofin-induced oxidative DNA damage and ATR inhibition in cancer cells
Shan Zhang1, Yue Zhao1, Xueqi Wang1
1Department of Cell Biology and Biophysics, Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, National Engineering Laboratory for AIDS Vaccine, School of Life Sciences, Jilin University, Changchun, China.
Aims:
Studies in the past have shown that inhibition of the ataxia telangiectasia and Rad3-related (ATR) kinase sensitizes cancer cells to genotoxic anticancer treatments, however, clinical use of ATR inhibitors in combination with DNA damaging chemotherapy is limited due to toxicity in healthy tissues. In this study, we investigated the synergistic anticancer effect between ATR inhibition and oxidative DNA damage induced by the thioredoxin reductase inhibitor auranofin.
Main Methods:
Cytotoxicity was evaluated by cell viability assays. Western blot, comet assay, immunostaining and flow cytometry were performed to dissect the underlying mechanisms. In vivo efficacy was examined against tumor xenografts.
Key Findings:
Nontoxic doses of auranofin alone increased the levels of reactive oxygen species (ROS) in cancer but not noncancerous cells, resulting in oxidative DNA damage and activation of the ATR DNA damage response pathway selectively in cancer cells. Inhibition of ATR in auranofin-treated cancer cells resulted in unscheduled firing of dormant DNA replication origins, abrogation of the S phase cell cycle checkpoint and extensive DNA breakage, leading to replication catastrophe and potent synergistic lethality. Both the antioxidant NAC and the DNA polymerase inhibitor aphidicolin reduced replication stress and synergistic cytotoxicity, implicating replication stress-driven catastrophic cell death resulted from collision between oxidative DNA damage and dysregulated DNA replication. In vivo, auranofin and VE822 coadministration enabled marked regressions of tumor xenografts, while each drug alone had no effect.
Significance:
As increased generation of ROS is a universal feature of tumors, our findings may open new routes to broaden the therapeutic potential of ATR inhibitors.
Insights
Combining auranofin to induce oxidative DNA damage with ataxia telangiectasia and Rad3-related (ATR) kinase inhibition shows potent synergistic anticancer effects. This approach selectively targets cancer cells, minimizing toxicity to healthy tissues and leading to significant tumor regression in vivo.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Ataxia telangiectasia and Rad3-related (ATR) kinase inhibition enhances cancer cell sensitivity to genotoxic treatments.
- Clinical application of ATR inhibitors is restricted by toxicity in healthy tissues.
Purpose of the Study:
- To investigate the synergistic anticancer effect of combining ATR inhibition with oxidative DNA damage induced by auranofin.
- To explore the potential of this combination therapy for cancer treatment.
Main Methods:
- Cell viability assays to evaluate cytotoxicity.
- Western blot, comet assay, immunostaining, and flow cytometry to elucidate mechanisms.
- In vivo studies using tumor xenografts to assess efficacy.
Main Results:
- Nontoxic auranofin doses selectively increased reactive oxygen species (ROS) and oxidative DNA damage in cancer cells, activating the ATR pathway.
- ATR inhibition in auranofin-treated cancer cells led to replication catastrophe and synergistic lethality.
- Antioxidants and DNA polymerase inhibitors reduced replication stress and cytotoxicity, indicating replication stress-driven cell death.
- Combined auranofin and ATR inhibitor (VE822) treatment resulted in significant tumor xenograft regression in vivo.
Conclusions:
- The combination of auranofin and ATR inhibition offers a potent synergistic anticancer effect.
- This strategy selectively targets cancer cells by exploiting their increased ROS production.
- Findings suggest a new therapeutic approach to broaden the clinical utility of ATR inhibitors.
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