Radiation Biology Center, Kyoto University, Kyoto 606-8501, Japan.
Mol Cell. 2011 Sep 2;43(5):788-97. doi: 10.1016/j.molcel.2011.07.026.
Translesion DNA synthesis, a process orchestrated by monoubiquitinated PCNA, is critical for DNA damage tolerance. While the ubiquitin-conjugating enzyme RAD6 and ubiquitin ligase RAD18 are known to monoubiquitinate PCNA, how they are regulated by DNA damage is not fully understood. We show that NBS1 (mutated in Nijmegen breakage syndrome) binds to RAD18 after UV irradiation and mediates the recruitment of RAD18 to sites of DNA damage. Disruption of NBS1 abolished RAD18-dependent PCNA ubiquitination and Polη focus formation, leading to elevated UV sensitivity and mutation. Unexpectedly, the RAD18-interacting domain of NBS1, which was mapped to its C terminus, shares structural and functional similarity with the RAD18-interacting domain of RAD6. These domains of NBS1 and RAD6 allow the two proteins to interact with RAD18 homodimers simultaneously and are crucial for Polη-dependent UV tolerance. Thus, in addition to chromosomal break repair, NBS1 plays a key role in translesion DNA synthesis.
跨损伤 DNA 合成是由单泛素化 PCNA 协调的过程,对 DNA 损伤容忍至关重要。虽然已知泛素连接酶 RAD6 和 RAD18 可单泛素化 PCNA,但它们如何受 DNA 损伤调节尚不完全清楚。我们发现,NBS1(在尼曼匹克破碎综合征中突变)在 UV 照射后与 RAD18 结合,并介导 RAD18 招募到 DNA 损伤部位。NBS1 的破坏消除了 RAD18 依赖的 PCNA 泛素化和 Polη 焦点形成,导致 UV 敏感性增加和突变。出乎意料的是,NBS1 的 RAD18 相互作用结构域映射到其 C 末端,与 RAD6 的 RAD18 相互作用结构域具有结构和功能上的相似性。NBS1 和 RAD6 的这些结构域允许这两种蛋白同时与 RAD18 同源二聚体相互作用,对于 Polη 依赖的 UV 耐受至关重要。因此,除了染色体断裂修复外,NBS1 在跨损伤 DNA 合成中也起着关键作用。