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Replication protein A-mediated recruitment and activation of Rad17 complexes

机译:复制蛋白A介导的Rad17复合物的募集和激活

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摘要

The human Rad17-Rfc2-5 and Rad9-Rad1-Hus1 complexes play crucial roles in the activation of the ATR-mediated DNA damage and DNA replication stress response pathways. In response to DNA damage, Rad9 is recruited to chromatin in a Rad17-dependent manner in human cells. However, the DNA structures recognized by the Rad17-Rfc2-5 complex during the damage response have not been defined. Here, we show that replication protein A (RPA) stimulates the binding of the Rad17-Rfc2-5 complex to single-stranded DNA (ssDNA), primed ssDNA, and a gapped DNA structure. Furthermore, RPA facilitates the recruitment of the Rad9-Rad1-Hus1 complex by the Rad17-Rfc2-5 complex to primed and gapped DNA structures in vitro. These findings suggest that RPA-coated ssDNA is an important part of the structures recognized by the Rad17-Rfc2-5 complex. Unlike replication factor C (RFC), which uses the 3′ primer/template junction to recruit proliferating cell nuclear antigen (PCNA), the Rad17-Rfc2-5 complex can use both the 5′ and the 3′ primer/template junctions to recruit the Rad9-Rad1-Hus1 complex, and it shows a preference for gapped DNA structures. These results explain how the Rad17-Rfc2-5 complex senses DNA damage and DNA replication stress to initiate checkpoint signaling.
机译:人类Rad17-Rfc2-5和Rad9-Rad1-Hus1复合体在ATR介导的DNA损伤和DNA复制应激反应途径的激活中起着至关重要的作用。响应DNA损伤,Rad9以Rad17依赖性方式募集到人类细胞中的染色质上。但是,还没有确定在损伤反应期间由Rad17-Rfc2-5复合体识别的DNA结构。在这里,我们显示复制蛋白A(RPA)刺激Rad17-Rfc2-5复合物与单链DNA(ssDNA),引发的ssDNA和有缺口的DNA结构的结合。此外,RPA有助于通过Rad17-Rfc2-5复合物募集Rad9-Rad1-Hus1复合物,以在体外引发和缺口DNA结构。这些发现表明,RPA涂层的ssDNA是Rad17-Rfc2-5复合体识别的结构的重要组成部分。与使用3'引物/模板连接来募集增殖细胞核抗原(PCNA)的复制因子C(RFC)不同,Rad17-Rfc2-5复合体可以同时使用5'和3'引物/模板连接来募集。 Rad9-Rad1-Hus1复合物,它显示了对缺口DNA结构的偏好。这些结果解释了Rad17-Rfc2-5复合体如何感测DNA损伤和DNA复制压​​力以启动检查点信号传导。

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