首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Human prostate epithelium lacks Wee1A-mediated DNA damage-induced checkpoint enforcement
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Human prostate epithelium lacks Wee1A-mediated DNA damage-induced checkpoint enforcement

机译:人类前列腺上皮缺乏Wee1A介导的DNA损伤诱导的检查点执行

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摘要

Cellular DNA damage triggers the DNA damage response pathway and leads to enforcement of cell cycle checkpoints, which are essential for the maintenance of genomic integrity and are activated in early stages of tumorigenesis. A special feature of prostate cancer is its high incidence and multifocality. To address the functionality of DNA damage checkpoints in the prostate, we analyzed the responses of human primary prostate epithelial cells (HPECs) and freshly isolated human prostate tissues to γ-irradiation. We find that γ-irradiation activates the ataxia telan-giectasia mutated-associated DNA damage response pathway in the HPECs but that the clearance of phosphorylated histone H2AX (γH2AX) foci is delayed. Surprisingly, γ-irradiated HPECs were unable to enforce cell cycle checkpoint arrest and had sustained cyclin-dependent kinase 2 (Cdk2)-associated kinase activity because of a lack of inhibitory Cdk phosphorylation by Wee1A tyrosine kinase. We further show that HPECs express low levels of Wee1A and that ectopic Wee1A efficiently rescues the checkpoints. We recapitulate the absence of checkpoint responses in epithelium of ex vivo irradiated human prostate tissue despite robust induction of γH2AX. The findings show that prostate epithelium has a surprising inability to control checkpoint arrest, the lack of which may predispose to accrual of DNA lesions.
机译:细胞DNA损伤会触发DNA损伤反应途径并导致细胞周期检查点的执行,这对于维持基因组完整性至关重要,并在肿瘤发生的早期被激活。前列腺癌的一个特殊特征是其高发病率和多灶性。为了解决前列腺中DNA损伤检查点的功能,我们分析了人类初级前列腺上皮细胞(HPEC)和新鲜分离的人类前列腺组织对γ辐射的反应。我们发现γ辐射激活HPECs中共济失调telan-giectasia突变相关的DNA损伤反应途径,但磷酸化组蛋白H2AX(γH2AX)病灶的清除被延迟。出人意料的是,由于缺乏Wee1A酪氨酸激酶抑制Cdk的磷酸化,γ射线辐照的HPEC无法强制执行细胞周期检查点停滞并具有持续的细胞周期蛋白依赖性激酶2(Cdk2)相关的激酶活性。我们进一步表明,HPECs表达的Wee1A水平较低,而异位的Wee1A有效地拯救了检查站。我们概述了尽管强烈诱导γH2AX,但离体辐射的人前列腺组织的上皮细胞中没有检查点反应。研究结果表明,前列腺上皮细胞难以控制检查点停滞,缺乏检查点可能会导致DNA损伤。

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