首页> 美国卫生研究院文献>Nucleic Acids Research >DNA-PK-dependent binding of DNA ends to plasmids containing nuclear matrix attachment region DNA sequences: evidence for assembly of a repair complex
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DNA-PK-dependent binding of DNA ends to plasmids containing nuclear matrix attachment region DNA sequences: evidence for assembly of a repair complex

机译:DNA末端与包含核基质附着区DNA序列的质粒的DNA-PK依赖性结合:修复复合体组装的证据

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摘要

We find that nuclear protein extracts from mammalian cells contain an activity that allows DNA ends to associate with circular pUC18 plasmid DNA. This activity requires the catalytic subunit of DNA-PK (DNA-PKcs) and Ku since it was not observed in mutants lacking Ku or DNA-PKcs but was observed when purified Ku/DNA-PKcs was added to these mutant extracts. Purified Ku/DNA-PKcs alone did not produce association of DNA ends with plasmid DNA suggesting that additional factors in the nuclear extract are necessary for this activity. Competition experiments between pUC18 and pUC18 plasmids containing various nuclear matrix attachment region (MAR) sequences suggest that DNA ends preferentially associate with plasmids containing MAR DNA sequences. At a 1:5 mass ratio of MAR to pUC18, approximately equal amounts of DNA end binding to the two plasmids were observed, while at a 1:1 ratio no pUC18 end binding was observed. Calculation of relative binding activities indicates that DNA end-binding activities to MAR sequences was 7–21-fold higher than pUC18. Western analysis of proteins bound to pUC18 and MAR plasmids indicates that XRCC4, DNA ligase IV and scaffold attachment factor A preferentially associate with the MAR plasmid in the absence or presence of DNA ends. In contrast, Ku and DNA-PKcs were found on the MAR plasmid only in the presence of DNA ends suggesting that binding of these proteins to DNA ends is necessary for their association with MAR DNA. The ability of DNA-PKcs/Ku to direct DNA ends to MAR and pUC18 plasmid DNA is a new activity for DNA-PK and may be important for its function in double-strand break repair. A model for DNA repair based on these observations is presented.
机译:我们发现,哺乳动物细胞中的核蛋白提取物具有允许DNA末端与环状pUC18质粒DNA结合的活性。该活性需要DNA-PK(DNA-PKcs)和Ku的催化亚基,因为在缺乏Ku或DNA-PKcs的突变体中未观察到该活性,但是在将纯化的Ku / DNA-PKcs添加到这些突变体提取物中时观察到了这一活性。单独纯化的Ku / DNA-PKcs不会产生DNA末端与质粒DNA的缔合,这表明核提取物中的其他因子对于此活性是必需的。包含各种核基质附着区(MAR)序列的pUC18和pUC18质粒之间的竞争实验表明,DNA末端优先与包含MAR DNA序列的质粒缔合。在MAR与pUC18的质量比为1:5的情况下,观察到与两个质粒的DNA末端结合量大致相等,而在1:1的比率下,未观察到pUC18的末端结合。相对结合活性的计算表明,对MAR序列的DNA末端结合活性比pUC18高7-21倍。对与pUC18和MAR质粒结合的蛋白质进行的Western分析表明,在不存在或不存在DNA末端的情况下,XRCC4,DNA连接酶IV和支架附着因子A优先与MAR质粒结合。相反,仅在DNA末端存在的情况下,在MAR质粒上发现了Ku和DNA-PKcs,这表明这些蛋白质与DNA末端的结合对于它们与MAR DNA的结合是必需的。 DNA-PKcs / Ku将DNA末端引导至MAR和pUC18质粒DNA的能力是DNA-PK的一项新活性,可能对其在双链断裂修复中的功能很重要。提出了基于这些观察结果的DNA修复模型。

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