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Single-molecule localization microscopy reveals molecular transactions during RAD51 filament assembly at cellular DNA damage sites

机译:单分子定位显微镜显微镜在蜂窝DNA损伤部位的Rad51长丝组件期间揭示了分子事务

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摘要

RAD51 recombinase assembles on single-stranded (ss) DNA substrates exposed by DNA end-resection to initiate homologous recombination (HR), a process fundamental to genome integrity. RAD51 assembly has been characterized using purified proteins, but its ultrastructural topography in the cell nucleus is unexplored. Here, we combine cell genetics with single-molecule localization microscopy and a palette of bespoke analytical tools, to visualize molecular transactions during RAD51 assembly in the cellular milieu at resolutions approaching 30-40 nm. In several human cell types, RAD51 focalizes in clusters that progressively extend into long filaments, which abut-but do not overlap-with globular bundles of replication protein A (RPA). Extended filaments alter topographically over time, suggestive of succeeding steps in HR. In cells depleted of the tumor suppressor protein BRCA2, or over-expressing its RAD51-binding BRC repeats, RAD51 fails to assemble at damage sites, although RPA accumulates unhindered. By contrast, in cells lacking a BRCA2 carboxyl (C)-terminal region targeted by cancer-causing mutations, damage-induced RAD51 assemblies initiate but do not extend into filaments. We suggest a model wherein RAD51 assembly proceeds concurrently with end-resection at adjacent sites, via an initiation step dependent on the BRC repeats, followed by filament extension through the C-terminal region of BRCA2.
机译:Rad51重组酶在通过DNA末端切除暴露的单链(SS)DNA底物上组装以引发同源重组(HR),该过程对基因组完整性的基础。 Rad51组件已经使用纯化的蛋白质表征,但其细胞核中的超微结构地形是未探测的。在这里,我们将细胞遗传学与单分子定位显微镜和定制分析工具的调色板组合,以在接近30-40nm的分辨率下在蜂窝环境中的Rad51组件中可视化分子事务。在几种人类细胞类型中,Rad51聚焦逐渐延伸到长丝的簇中,其邻接 - 但不重叠 - 具有复制蛋白A(RPA)的球形束。扩展的大通以拓扑方式改变,暗示人力资源的后续步骤。在肿瘤抑制蛋白BRCA2的细胞中,或过度表达其RAD51结合BRC重复,RAD51不能在损伤部位组装,但是RPA累积阻尼。相比之下,在缺乏通过癌症突变的靶向靶向的BRCA2羧基(C)的细胞中,损伤诱导的RAD51组件引发但不延伸到长丝中。我们建议一种模型,其中RAD51组件在相邻位点处与终点切除在相邻部位的结束切除,通过依赖于BRC重复的启动步骤,然后通过BRCA2的C末端区域进行丝延伸。

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  • 来源
    《Nucleic Acids Research》 |2018年第5期|共19页
  • 作者单位

    Univ Cambridge Med Res Council Canc Unit Hills Rd Cambridge CB2 0XZ England;

    Univ Cambridge Med Res Council Canc Unit Hills Rd Cambridge CB2 0XZ England;

    Univ Cambridge Med Res Council Canc Unit Hills Rd Cambridge CB2 0XZ England;

    Univ Cambridge Med Res Council Canc Unit Hills Rd Cambridge CB2 0XZ England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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