NBS1 recruits RAD18 via a RAD6-like domain and regulates Pol η-dependent translesion DNA synthesis

NBS1 通过 RAD6 样结构域募集 RAD18 并调节 Pol η 依赖的跨损伤 DNA 合成

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作者:Hiromi Yanagihara, Junya Kobayashi, Satoshi Tateishi, Akihiro Kato, Shinya Matsuura, Hiroshi Tauchi, Kouichi Yamada, Jun Takezawa, Kaoru Sugasawa, Chikahide Masutani, Fumio Hanaoka, Corry M Weemaes, Toshio Mori, Lee Zou, Kenshi Komatsu

Abstract

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.

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