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首页> 外文期刊>Molecular cell >VCP/p97 Extracts Sterically Trapped Ku70/80 Rings from DNA in Double-Strand Break Repair
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VCP/p97 Extracts Sterically Trapped Ku70/80 Rings from DNA in Double-Strand Break Repair

机译:VCP / p97在双链断裂修复中从DNA中提取立体捕获的Ku70 / 80环

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摘要

During DNA double-strand break (DSB) repair, the ring-shaped Ku70/80 complex becomes trapped on DNA and needs to be actively extracted, but it has remained unclear what provides the required energy. By means of reconstitution of DSB repair on beads, we demonstrate here that DNA-locked Ku rings are released by the AAA-ATPase p97. To achieve this, p97 requires ATP hydrolysis, cooperates with the Ufd1-Npl4 ubiquitin-adaptor complex, and specifically targets Ku80 that is modified by K48-linked ubiquitin chains. In U2OS cells, chemical inhibition of p97 or siRNA-mediated depletion of p97 or its adapters impairs Ku80 removal after non-homologous end joining of DSBs. Moreover, this inhibition attenuates early steps in homologous recombination, consistent with p97-driven Ku release also affecting repair pathway choice. Thus, our data answer a central question regarding regulation of Ku in DSB repair and illustrate the ability of p97 to segregate even tightly bound protein complexes for release from DNA.
机译:在DNA双链断裂(DSB)修复过程中,环状的Ku70 / 80复合物被捕获在DNA上,需要主动提取,但尚不清楚什么能提供所需的能量。通过在珠子上重建DSB修复,我们在这里证明了AAA-ATPase p97释放了DNA锁定的Ku环。为实现此目的,p97需要ATP水解,与Ufd1-Npl4泛素-适配器复合物配合,并特别靶向被K48连接的泛素链修饰的Ku80。在U2OS细胞中,在非同源末端连接DSB后,对p97或siRNA介导的p97或其接头的耗尽的化学抑制作用会损害Ku80的去除。此外,这种抑制作用减弱了同源重组的早期步骤,这与p97驱动的Ku释放同样也影响修复途径的选择。因此,我们的数据回答了有关DSB修复中Ku调控的核心问题,并说明了p97分离甚至紧密结合的蛋白质复合物以从DNA释放的能力。

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