In advanced castration resistant prostate cancer (CRPC), mutations in the DNA damage response (DDR) gene ataxia telangiectasia mutated (ATM) are common. While poly(ADP-ribose) polymerase inhibitors are approved in this context, their clinical efficacy remains limited. Thus, there is a compelling need to identify alternative therapeutic avenues for ATM mutant prostate cancer patients. Here, we generated matched ATM-proficient and ATM-deficient CRPC lines to elucidate the impact of ATM loss on DDR in response to DNA damage via irradiation. Through unbiased phosphoproteomic screening, we unveiled that ATM-deficient CRPC lines maintain dependence on downstream ATM targets through activation of ATR and DNA-PKcs kinases. Dual inhibition of ATR and DNA-PKcs effectively inhibited downstream γH2AX foci formation in response to irradiation and radiosensitized ATM-deficient lines to a greater extent than either ATM-proficient controls or single drug treatment. Further, dual inhibition abrogated residual downstream ATM pathway signaling and impaired replication fork dynamics. To circumvent potential toxicity, we leveraged the RUVBL1/2 ATPase inhibitor Compound B, which leads to the degradation of both ATR and DNA-PKcs kinases. Compound B effectively radiosensitized ATM-deficient CRPC in vitro and in vivo, and impacted replication fork dynamics. Overall, dual targeting of both ATR and DNA-PKcs is necessary to block DDR in ATM-deficient CRPC, and Compound B could be utilized as a novel therapy in combination with irradiation in these patients.
Dual inhibition of ATR and DNA-PKcs radiosensitizes ATM-mutant prostate cancer.
双重抑制 ATR 和 DNA-PKcs 可增强 ATM 突变型前列腺癌的放射敏感性
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作者:Hofstad Mia, Woods Andrea, Parra Karla, Sychev Zoi E, Mazzagatti Alice, Huo Xiaofang, Yu Lan, Gilbreath Collin, Chen Wei-Min, Davis Anthony J, Ly Peter, Drake Justin M, Kittler Ralf
| 期刊: | Oncogene | 影响因子: | 7.300 |
| 时间: | 2025 | 起止号: | 2025 Jun;44(22):1746-1760 |
| doi: | 10.1038/s41388-025-03343-x | 研究方向: | 肿瘤 |
| 疾病类型: | 前列腺癌 | ||
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