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Dual inhibition of DNA-PK and DNA polymerase theta overcomes radiation resistance induced by p53 deficiency

机译:DNA-PK和DNA聚合酶的双重抑制越克服P53缺乏诱导的辐射抗性

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摘要

TP53 deficiency in cancer is associated with poor patient outcomes and resistance to DNA damaging therapies. However, the mechanisms underlying treatment resistance in p53-deficient cells remain poorly characterized. Using live cell imaging of DNA double-strand breaks (DSBs) and cell cycle state transitions, we show that p53-deficient cells exhibit accelerated repair of radiomimetic-induced DSBs arising in S phase. Low-dose DNA-dependent protein kinase (DNA-PK) inhibition increases the S-phase DSB burden in p53-deficient cells, resulting in elevated rates of mitotic catastrophe. However, a subset of p53-deficient cells exhibits intrinsic resistance to radiomimetic-induced DSBs despite DNA-PK inhibition. We show that p53-deficient cells under DNA-PK inhibition utilize DNA polymerase theta (Pol θ)-mediated end joining repair to promote their viability in response to therapy-induced DSBs. Pol θ inhibition selectively increases S-phase DSB burden after radiomimetic therapy and promotes prolonged G2 arrest. Dual inhibition of DNA-PK and Pol θ restores radiation sensitivity in p53-deficient cells as well as in p53-mutant breast cancer cell lines. Thus, combination targeting of DNA-PK- and Pol θ-dependent end joining repair represents a promising strategy for overcoming resistance to DNA damaging therapies in p53-deficient cancers.
机译:TP53癌症的缺陷与患者结果不佳,抗DNA损伤疗法有关。然而,P53缺陷细胞中的治疗抗性的潜在机制仍然是特征性差不多的。使用DNA双链断裂(DSB)和细胞周期状态转变的活细胞成像,我们表明P53缺陷细胞表现出在S相中产生的放射性诱导的DSB的加速修复。低剂量DNA依赖性蛋白激酶(DNA-PK)抑制增加了P53缺陷细胞中的S-阶段DSB负荷,导致有丝分裂灾难率升高。然而,尽管DNA-PK抑制,P53缺陷细胞的子集表现出对放射性诱导的DSB的内在抗性。我们表明DNA-PK抑制下的P53缺陷细胞利用DNA聚合酶θ(POLθ)介导的端部连接修复,以促进其响应于治疗诱导的DSB的活力。 POLθ抑制在放射摩擦疗法后选择性地增加S相DSB负荷并促进G2延长。 DNA-PK和POLθ的双重抑制恢复p53缺陷细胞以及P53-突变乳腺癌细胞中的辐射敏感性。因此,DNA-PK和POLθ依赖性结束连接修复的组合靶向代表了克服P53缺陷癌中的DNA损伤疗法的耐受性的有希望的策略。

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