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Visualization of a DNA-PK/PARP1 complex

机译:DNA-PK / PARP1复合物的可视化

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The DNA-dependent protein kinase (DNA-PK) and Poly(ADP-ribose) polymerase-1 (PARP1) are critical enzymes that reduce genomic damage caused by DNA lesions. They are both activated by DNA strand breaks generated by physiological and environmental factors, and they have been shown to interact. Here, we report in vivo evidence that DNA-PK and PARP1 are equally necessary for rapid repair. We purified a DNA-PK/PARP1 complex loaded on DNA and performed electron microscopy and single particle analysis on its tetrameric and dimer-of-tetramers forms. By comparison with the DNA-PK holoenzyme and fitting crystallographic structures, we see that the PARP1 density is in close contact with the Ku subunit. Crucially, PARP1 binding elicits substantial conformational changes in the DNA-PK synaptic dimer assembly. Taken together, our data support a functional, in-pathway role for DNA-PK and PARP1 in double-strand break (DSB) repair. We also propose a NHEJ model where protein-protein interactions alter substantially the architecture of DNA-PK dimers at DSBs, to trigger subsequent interactions or enzymatic reactions.
机译:DNA依赖性蛋白激酶(DNA-PK)和Poly(ADP-核糖)聚合酶-1(PARP1)是减少由DNA损伤引起的基因组损伤的关键酶。它们均由生理和环境因素产生的DNA链断裂激活,并且已显示出相互作用。在这里,我们报告了体内证据,DNA-PK和PARP1对于快速修复同样必要。我们纯化了载于DNA上的DNA-PK / PARP1复合物,并对其四聚体和四聚体形式进行了电子显微镜和单颗粒分析。通过与DNA-PK全酶和合适的晶体结构进行比较,我们看到PARP1密度与Ku亚基紧密接触。至关重要的是,PARP1结合引发了DNA-PK突触二聚体组装中的构象变化。两者合计,我们的数据支持DNA-PK和PARP1在双链断裂(DSB)修复中的功能性通路作用。我们还提出了一个NHEJ模型,其中蛋白质-蛋白质相互作用会实质上改变DSB处DNA-PK二聚体的结构,从而触发随后的相互作用或酶促反应。

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