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The role of DNA dependent protein kinase in synapsis of DNA ends

机译:DNA依赖性蛋白激酶在DNA末端突触中的作用

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DNA dependent protein kinase (DNA-PK) plays a central role in the non-homologous end-joining pathway of DNA double strand break repair. Its catalytic subunit (DNA-PK_(CS)) functions as a serine/threonine protein kinase. We show that DNA-PK forms a stable complex at DNA termini that blocks the action of exonucleases and ligases. The DNA termini become accessible after autophosphorylation of DNA-PK_(CS), which we demonstrate to require synapsis of DNA ends. Interestingly, the presence of DNA-PK prevents ligation of the two synapsed termini, but allows ligation to another DNA molecule. This alteration of the ligation route is independent of the type of ligase that we used, indicating that the intrinsic architecture of the DNA-PK complex itself is not able to support ligation of the synapsed DNA termini. We present a working model in which DNA-PK creates a stable molecular bridge between two DNA ends that is remodeled after DNA-PK autophosphorylation in such a way that the extreme termini become accessible without disrupting synapsis. We infer that joining of synapsed DNA termini would require an additional protein factor.
机译:DNA依赖性蛋白激酶(DNA-PK)在DNA双链断裂修复的非同源末端连接途径中起着核心作用。它的催化亚基(DNA-PK_(CS))充当丝氨酸/苏氨酸蛋白激酶。我们表明,DNA-PK在DNA末端形成稳定的复合物,阻止核酸外切酶和连接酶的作用。 DNA-PK_(CS)自磷酸化后,DNA末端变得可访问,我们证明这需要DNA末端的突触。有趣的是,DNA-PK的存在阻止了两个突触末端的连接,但允许与另一个DNA分子连接。连接途径的这种改变与我们使用的连接酶的类型无关,表明DNA-PK复合物本身的固有结构不能支持突触DNA末端的连接。我们提出了一个工作模型,其中DNA-PK在两个DNA末端之间创建了一个稳定的分子桥,DNA-PK自磷酸化后,DNA-PK被重新建模,从而使末端可以进入而不破坏突触。我们推断,突触DNA末端的加入将需要额外的蛋白质因子。

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