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p53 isoform Δ113p53/Δ133p53 promotes DNA double-strand break repair to protect cell from death and senescence in response to DNA damage

机译:p53亚型Δ113p53/Δ133p53促进DNA双链断裂修复以保护细胞免受DNA损伤的死亡和衰老

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摘要

The inhibitory role of p53 in DNA double-strand break (DSB) repair seems contradictory to its tumor-suppressing property. The p53 isoform Δ113p53/Δ133p53 is a p53 target gene that antagonizes p53 apoptotic activity. However, information on its functions in DNA damage repair is lacking. Here we report that Δ113p53 expression is strongly induced by γ-irradiation, but not by UV-irradiation or heat shock treatment. Strikingly, Δ113p53 promotes DNA DSB repair pathways, including homologous recombination, non-homologous end joining and single-strand annealing. To study the biological significance of Δ113p53 in promoting DNA DSB repair, we generated a zebrafish Δ113p53M/M mutant via the transcription activator-like effector nuclease technique and found that the mutant is more sensitive to γ-irradiation. The human ortholog, Δ133p53, is also only induced by γ-irradiation and functions to promote DNA DSB repair. Δ133p53-knockdown cells were arrested at the G2 phase at the later stage in response to γ-irradiation due to a high level of unrepaired DNA DSBs, which finally led to cell senescence. Furthermore, Δ113p53/Δ133p53 promotes DNA DSB repair via upregulating the transcription of repair genes rad51, lig4 and rad52 by binding to a novel type of p53-responsive element in their promoters. Our results demonstrate that Δ113p53/Δ133p53 is an evolutionally conserved pro-survival factor for DNA damage stress by preventing apoptosis and promoting DNA DSB repair to inhibit cell senescence. Our data also suggest that the induction of Δ133p53 expression in normal cells or tissues provides an important tolerance marker for cancer patients to radiotherapy.
机译:p53在DNA双链断裂(DSB)修复中的抑制作用似乎与其肿瘤抑制特性矛盾。 p53同工型Δ113p53/Δ133p53是拮抗p53凋亡活性的p53靶基因。但是,缺乏有关其在DNA损伤修复中的功能的信息。在这里,我们报道Δ113p53表达是由γ辐射强烈诱导的,而不是由UV辐射或热激处理引起的。令人惊讶的是,Δ113p53促进DNA DSB修复途径,包括同源重组,非同源末端连接和单链退火。为了研究Δ113p53在促进DNA DSB修复中的生物学意义,我们通过类似转录激活子的效应核酸酶技术产生了一个斑马鱼Δ113p53 M / M 突变体,发现该突变体对γ辐射更敏感。 。人类直系同源物Δ133p53也仅通过γ辐射诱导,并具有促进DNA DSB修复的功能。由于高水平的未修复DNA DSB,在γ辐射的响应下,Δ133p53-knockdown细胞在后期被阻滞在G2期,最终导致细胞衰老。此外,Δ113p53/Δ133p53通过与启动子中新型的p53反应元件结合,通过上调修复基因rad51,lig4和rad52的转录来促进DNA DSB修复。我们的研究结果表明,Δ113p53/Δ133p53是通过防止凋亡和促进DNA DSB修复来抑制细胞衰老而在DNA损伤应激中进化保守的生存因子。我们的数据还表明,正常细胞或组织中Δ133p53表达的诱导为癌症患者的放射治疗提供了重要的耐受性标志。

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