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Coincident In Vitro Analysis of DNA-PK-Dependent and -Independent Nonhomologous End Joining

机译:DNA-PK依赖性和非依赖性非同源末端连接的同时体外分析

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摘要

In mammalian cells, DNA double-strand breaks (DSBs) are primarily repaired by nonhomologous end joining (NHEJ). The current model suggests that the Ku 70/80 heterodimer binds to DSB ends and recruits DNA-PKcs to form the active DNA-dependent protein kinase, DNA-PK. Subsequently, XRCC4, DNA ligase IV, XLF and most likely, other unidentified components participate in the final DSB ligation step. Therefore, DNA-PK plays a key role in NHEJ due to its structural and regulatory functions that mediate DSB end joining. However, recent studies show that additional DNA-PK-independent NHEJ pathways also exist. Unfortunately, the presence of DNA-PKcs appears to inhibit DNA-PK-independent NHEJ, and in vitro analysis of DNA-PK-independent NHEJ in the presence of the DNA-PKcs protein remains problematic. We have developed an in vitro assay that is preferentially active for DNA-PK-independent DSB repair based solely on its reaction conditions, facilitating coincident differential biochemical analysis of the two pathways. The results indicate the biochemically distinct nature of the end-joining mechanisms represented by the DNA-PK-dependent and -independent NHEJ assays as well as functional differences between the two pathways.
机译:在哺乳动物细胞中,DNA双链断裂(DSB)主要通过非同源末端连接(NHEJ)进行修复。当前模型表明,Ku 70/80异二聚体与DSB末端结合并募集DNA-PKcs以形成活性的DNA依赖性蛋白激酶DNA-PK。随后,XRCC4,DNA连接酶IV,XLF和最可能的其他未鉴定组分参与了最后的DSB连接步骤。因此,DNA-PK由于其介导DSB末端连接的结构和调节功能而在NHEJ中起关键作用。但是,最近的研究表明还存在其他不依赖DNA-PK的NHEJ途径。不幸的是,DNA-PKcs的存在似乎抑制了不依赖DNA-PK的NHEJ,并且在存在DNA-PKcs蛋白的情况下体外分析不依赖DNA-PK的NHEJ仍然存在问题。我们已经开发了一种体外测定法,仅基于其反应条件,该测定法对于不依赖于DNA-PK的DSB修复具有优先活性,从而促进了两种途径的同时差异生化分析。结果表明,以DNA-PK依赖性和非依赖性NHEJ分析为代表的末端连接机制的生化特性不同,以及这两种途径之间的功能差异。

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