首页> 外文期刊>Nucleic Acids Research >Terminal DNA structure and ATP influence binding parameters of the DNA-dependent protein kinase at an early step prior to DNA synapsis.
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Terminal DNA structure and ATP influence binding parameters of the DNA-dependent protein kinase at an early step prior to DNA synapsis.

机译:末端DNA结构和ATP在DNA突触之前的较早步骤会影响DNA依赖性蛋白激酶的结合参数。

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摘要

The DNA-dependent protein kinase catalytic subunit (DNA-PKcs) regulates the non-homologous end-joining pathway of DNA double-strand break repair in mammalian cells. The ability of DNA-PKcs to sense and respond to different terminal DNA structures is postulated to be important for its regulatory function. It is unclear whether discrimination occurs at the time of formation of the initial protein-DNA complex or later, at the time of formation of a paired, or synaptic complex between opposing DNA ends. To gain further insight into the mechanism of regulation, we characterized the binding of DNA-PKcs to immobilized DNA fragments that cannot undergo synapsis. Results showed that DNA-PKcs strongly discriminates between different terminal structures at the time of initial complex formation. Although Ku protein stabilizes DNA-PKcs binding overall, it is not required for discrimination between terminal structures. Base mispairing, temperature and the presence of an interstrand linkage influence the stability ofthe initial complex in a manner that suggests a requirement for DNA unwinding, reminiscent of the 'open complex' model of RNA polymerase-promoter DNA interaction. ATP and a nonhydrolyzable ATP analog also influence the stability of the DNA-PKcs*DNA complex, apparently by an allosteric mechanism that does not require DNA-PKcs autophosphorylation.
机译:DNA依赖性蛋白激酶催化亚基(DNA-PKcs)调节哺乳动物细胞中DNA双链断裂修复的非同源末端连接途径。假定DNA-PKcs感知并响应不同末端DNA结构的能力对其调节功能很重要。尚不清楚是在初始蛋白质-DNA复合物形成时还是在以后,在相对的DNA末端之间形成配对或突触复合物时进行区分。为了进一步了解调节机制,我们表征了DNA-PKcs与无法发生突触的固定DNA片段的结合。结果表明,在初始复合物形成时,DNA-PKcs强烈地区分不同的末端结构。尽管Ku蛋白可稳定DNA-PKcs的整体结合,但不需要区分末端结构。碱基错配,温度和链间键的存在会影响初始复合物的稳定性,从而提示需要解开DNA,这让人想起RNA聚合酶-启动子DNA相互作用的“开放复合物”模型。 ATP和不可水解的ATP类似物也影响DNA-PKcs * DNA复合物的稳定性,显然是通过不需要DNA-PKcs自磷酸化的变构机制来实现的。

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