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Focus-formation of replication protein A, activation of checkpoint system and DNA repair synthesis induced by DNA double-strand breaks in Xenopus egg extract

机译:非洲爪蟾卵提取物中DNA双链断裂诱导的复制蛋白A的聚焦形成,检查点系统的激活和DNA修复合成

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The response to DNA damage was analyzed using a cell-free system consisting of Xenopus egg extract and demembranated sperm nuclei. In the absence of DNA-damaging agents, detergent-resistant accumulation of replication protein A appeared in nuclei after a 30 minute incubation, and a considerable portion of the replication protein A signals disappeared during a further 30 minute incubation. Similar replication protein A accumulation was observed in the nuclei after a 30 minute incubation in the extract containing camptothecin, whereas a further 30 minute incubation generated discrete replication protein A foci. The addition of camptothecin also induced formation of gamma-H2AX foci, which have been previously shown to localize at sites of DSBs. Analysis of the time course of DNA replication and results obtained using geminin, an inhibitor of licensing for DNA replication, suggest that the discrete replication protein A foci formed in response to camptothecin-induced DNA damage occur in a DNA-replication-dependent manner. When the nuclei were incubated in the extract containing EcoRI, discrete replication protein A foci were observed at 30 minutes as well as at 60 and 90 minutes after incubation, and the focus-formation of replication protein A was not sensitive to geminin. DNA replication was almost completely inhibited in the presence of EcoRI and the inhibition was sensitive to caffeine, an inhibitor of ataxia telangiectasia mutated protein (ATM) and ATM- and Rad3-related protein (ATR). However, the focus-formation of replication protein A in the presence of EcoRI was not influenced by caffeine treatment. EcoRI-induced incorporation of biotin-dUTP into chromatin was observed following geminin-mediated inhibition of DNA replication, suggesting that the incorporation was the result of DNA repair. The biotin-, dUTP signal co-localized with replication protein A foci and was not significantly suppressed or stimulated by the addition of caffeine. [References: 57]
机译:使用非洲爪蟾卵提取物和去膜的精子核组成的无细胞系统分析对DNA损伤的反应。在不存在DNA破坏剂的情况下,孵育30分钟后细胞核中会出现去污剂抗复制蛋白A的积累,并且在进一步孵育30分钟后复制蛋白A的相当一部分信号消失了。在含有喜树碱的提取物中孵育30分钟后,在细胞核中观察到相似的复制蛋白A积累,而再孵育30分钟则产生了离散的复制蛋白A病灶。喜树碱的加入还诱导了γ-H2AX灶的形成,先前已证明它们位于DSBs的位点。对DNA复制的时间过程的分析和使用geminin(一种获得DNA复制许可的抑制剂)获得的结果表明,响应喜树碱诱导的DNA损伤而形成的离散复制蛋白A焦点以DNA复制依赖的方式发生。当在含有EcoRI的提取物中孵育细胞核时,在孵育后30分钟以及60和90分钟观察到离散的复制蛋白A病灶,并且复制蛋白A的焦点形成对geminin不敏感。在EcoRI存在下,DNA复制几乎被完全抑制,并且该抑制作用对咖啡因敏感,咖啡因是共济失调性毛细血管扩张突变蛋白(ATM)以及ATM和Rad3相关蛋白(ATR)的抑制剂。但是,在EcoRI存在下复制蛋白A的焦点形成不受咖啡因处理的影响。在胚芽蛋白介导的DNA复制抑制后,观察到EcoRI诱导的生物素-dUTP掺入染色质,这表明掺入是DNA修复的结果。生物素,dUTP信号与复制蛋白A病灶共定位,并没有因添加咖啡因而受到明显抑制或刺激。 [参考:57]

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