4.8 Article

SUMO and ubiquitin-dependent XPC exchange drives nucleotide excision repair

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NATURE COMMUNICATIONS
卷 6, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms8499

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资金

  1. Dutch Organization for Scientific Research ZonMW TOP Grants [912.08.031, 912.12.132]
  2. Dutch Organization for Scientific Research ALW VIDI grant [846.13.004]
  3. Horizon Zenith [935.11.042]
  4. Dutch Science Organization (NWO)
  5. Chemical Sciences (CW) [ECHO.12.B1.043]
  6. European Research Council Advanced Grant [340988-ERC-ID]
  7. FP7 Marie Curie International Training Network aDDRess
  8. Erasmus MC fellowship
  9. Novo Nordisk Foundation Center for Protein Research [PI Niels Mailand] Funding Source: researchfish

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XPC recognizes UV-induced DNA lesions and initiates their removal by nucleotide excision repair (NER). Damage recognition in NER is tightly controlled by ubiquitin and SUMO modifications. Recent studies have shown that the SUMO-targeted ubiquitin ligase RNF111 promotes K63-linked ubiquitylation of SUMOylated XPC after DNA damage. However, the exact regulatory function of these modifications in vivo remains elusive. Here we show that RNF111 is required for efficient repair of ultraviolet-induced DNA lesions. RNF111-mediated ubiquitylation promotes the release of XPC from damaged DNA after NER initiation, and is needed for stable incorporation of the NER endonucleases XPG and ERCC1/XPF. Our data suggest that RNF111, together with the CRL4(DDB2) ubiquitin ligase complex, is responsible for sequential XPC ubiquitylation, which regulates the recruitment and release of XPC and is crucial for efficient progression of the NER reaction, thereby providing an extra layer of quality control of NER.

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