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首页> 外文期刊>Nucleic acids research >Cell cycle stage-specific roles of Rad18 in tolerance and repair of oxidative DNA damage
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Cell cycle stage-specific roles of Rad18 in tolerance and repair of oxidative DNA damage

机译:Rad18在耐受和修复氧化性DNA损伤中的细胞周期阶段特异性作用

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The E3 ubiquitin ligase Rad18 mediates tolerance of replication fork-stalling bulky DNA lesions, but whether Rad18 mediates tolerance of bulky DNA lesions acquired outside S-phase is unclear. Using synchronized cultures of primary human cells, we defined cell cycle stage-specific contributions of Rad18 to genome maintenance in response to ultraviolet C (UVC) and H2O2-induced DNA damage. UVC and H2O2 treatments both induced Rad18-mediated proliferating cell nuclear antigen mono-ubiquitination during G0, G1 and S-phase. Rad18 was important for repressing H2O2-induced (but not ultraviolet-induced) double strand break (DSB) accumulation and ATM S1981 phosphorylation only during G1, indicating a specific role for Rad18 in processing of oxidative DNA lesions outside S-phase. However, H2O2-induced DSB formation in Rad18-depleted G1 cells was not associated with increased genotoxin sensitivity, indicating that back-up DSB repair mechanisms compensate for Rad18 deficiency. Indeed, in DNA LigIV-deficient cells Rad18-depletion conferred H2O2-sensitivity, demonstrating functional redundancy between Rad18 and non-homologous end joining for tolerance of oxidative DNA damage acquired during G1. In contrast with G1-synchronized cultures, S-phase cells were H2O2-sensitive following Rad18-depletion. We conclude that although Rad18 pathway activation by oxidative lesions is not restricted to S-phase, Rad18-mediated trans-lesion synthesis by Polη is dispensable for damage-tolerance in G1 (because of back-up non-homologous end joining-mediated DSB repair), yet Rad18 is necessary for damage tolerance during S-phase.
机译:E3泛素连接酶Rad18介导复制叉陈旧的庞大DNA损伤的耐受性,但尚不清楚Rad18是否介导在S期以外获得的庞大DNA损伤的耐受性。使用原代人细胞的同步培养,我们定义了Rad18对紫外线C(UVC)和H 2 O 2 诱导的基因组维持的细胞周期阶段特异性贡献DNA损伤。 UVC和H 2 O 2 处理均在G 0 ,G 1 <期间诱导Rad18介导的增殖细胞核抗原单泛素化。 / sub>和S相。 Rad18仅对于在G 1期间抑制H 2 O 2 诱导(但不是紫外线诱导)的双链断裂(DSB)积累和ATM S1981磷酸化很重要,表明Rad18在处理S期以外的氧化性DNA损伤中起特定作用。然而,H 2 O 2 诱导的Rad18缺失的G1细胞中DSB的形成与遗传毒素敏感性的增加无关,这表明备用DSB修复机制可以弥补Rad18的缺乏。 。确实,在DNA LigIV缺陷型细胞中,Rad18耗竭赋予了H 2 O 2 敏感性,证明了Rad18和非同源末端连接之间的功能冗余,可耐受氧化性DNA损伤在G 1 期间获取。与G 1 同步培养相反,R18耗竭后,S期细胞对H 2 O 2 敏感。我们得出的结论是,尽管氧化损伤激活的Rad18途径不限于S期,但Polη对Rad介导的Rad18介导的跨损伤合成对于G 1 的损伤耐受性是必不可少的(因为没有备份-同源末端连接介导的DSB修复),但是Rad18对于S阶段的损伤耐受是必需的。

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