4.7 Article

E4 ligase-specific ubiquitination hubs coordinate DNA double-strand-break repair and apoptosis

Journal

NATURE STRUCTURAL & MOLECULAR BIOLOGY
Volume 23, Issue 11, Pages 995-1002

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nsmb.3296

Keywords

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Funding

  1. NIH National Center for Research Resources
  2. Wellcome Trust [090944/Z/09/Z]
  3. German-Israeli Foundation [GIF 1104-68.11/2010]
  4. Deutsche Forschungsgemeinschaft [EXC 229, SFB 829, SFB 670, KFO 286, HO 2541/8-1]
  5. European Research Council (ERC) [260383]
  6. Marie Curie Actions [FP7 ITN CodeAge 316354, aDDRess 316390, MARRIAGE 316964]
  7. Bundesministerium fur Forschung and Bildung [Sybacol FKZ0315893A-B]
  8. European Research Council [616499]
  9. COST Action - COST (European Cooperation in Science and Technology) [PROTEOSTASIS BM1307]
  10. Wellcome Trust [090944/Z/09/Z] Funding Source: Wellcome Trust

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Multiple protein ubiquitination events at DNA double-strand breaks (DSBs) regulate damage recognition, signaling and repair. It has remained poorly understood how the repair process of DSBs is coordinated with the apoptotic response. Here, we identified the E4 ubiquitin ligase UFD-2 as a mediator of DNA-damage-induced apoptosis in a genetic screen in Caenorhabditis elegans. We found that, after initiation of homologous recombination by RAD-51, UFD-2 forms foci that contain substrate-processivity factors including the ubiquitin-selective segregase CDC-48 (p97), the deubiquitination enzyme ATX-3 (Ataxin-3) and the proteasome. In the absence of UFD-2, RAD-51 foci persist, and DNA damage-induced apoptosis is prevented. In contrast, UFD-2 foci are retained until recombination intermediates are removed by the Holliday-junction-processing enzymes GEN-1, MUS-81 or XPF-1. Formation of UFD-2 foci also requires proapoptotic CEP-1 (p53) signaling. Our findings establish a central role of UFD-2 in the coordination between the DNA-repair process and the apoptotic response.

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