抗辐射性
电离辐射
LNCaP公司
前列腺癌
DNA损伤
PARP1
癌症研究
平方毫米
衰老
医学
放射增敏剂
辐射敏感性
DNA修复
癌症
化学
放射治疗
辐照
内科学
生物
细胞凋亡
细胞生物学
细胞培养
物理
聚ADP核糖聚合酶
DNA
遗传学
聚合酶
核物理学
作者
Yao Fan,Hui Fan,Zhen Quan,Xiaohou Wu
标识
DOI:10.1080/07357907.2021.1899200
摘要
Tumor suppressor genes RB1 and TP53 are altered frequently in prostate cancer (PC), whether RB1 and TP53 inactivation promotes radioresistance remains unclear. Herein, we demonstrated that RB1 loss enhanced ionizing radiation (IR)-induced DNA damage to inhibit cell proliferation and promote cellular senescence through a TP53-dependent pathway in LNCaP cells. Furthermore, the stabilization of TP53 was regulated by ATM-mediated phosphorylation of MDM2 at Ser395. However, inactivation of RB1/TP53 reversed DNA damage-induced cellular senescence and promoted radiation survival. Importantly, combined with PARP1 inhibitor restored radiosensitivity. This finding provides a potential approach for the therapy of PC with RB1/TP53 inactivation.
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