4.7 Article

Local regulation of the Srs2 helicase by the SUMO-like domain protein Esc2 promotes recombination at sites of stalled replication

期刊

GENES & DEVELOPMENT
卷 29, 期 19, 页码 2067-2080

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gad.265629.115

关键词

DNA damage tolerance; replication; recombination; SUMO; genotoxic stress

资金

  1. Italian Association for Cancer Research (AIRC) [IG 14171]
  2. Fondazione Telethon [GGP12160]
  3. European Research Council [REPSUBREP 242928]
  4. European Regional Development Fund (Project FNUSA-ICRC) [CZ.1.05/1.1.00/02.0123]
  5. Structured International Post-doc Program (SIPOD)
  6. Fondazione Italiana per la Ricerca sul Cancro fellowship
  7. [GACR13-26629S]
  8. [GACR207/12/2323]

向作者/读者索取更多资源

Accurate completion of replication relies on the ability of cells to activate error-free recombination-mediated DNA damage bypass at sites of perturbed replication. However, as anti-recombinase activities are also recruited to replication forks, how recombination-mediated damage bypass is enabled at replication stress sites remained puzzling. Here we uncovered that the conserved SUMO-like domain-containing Saccharomyces cerevisiae protein Esc2 facilitates recombination-mediated DNA damage tolerance by allowing optimal recruitment of the Rad51 recombinase specifically at sites of perturbed replication. Mechanistically, Esc2 binds stalled replication forks and counteracts the anti-recombinase Srs2 helicase via a two-faceted mechanism involving chromatin recruitment and turnover of Srs2. Importantly, point mutations in the SUMO-like domains of Esc2 that reduce its interaction with Srs2 cause suboptimal levels of Rad51 recruitment at damaged replication forks. In conclusion, our results reveal how recombination-mediated DNA damage tolerance is locally enabled at sites of replication stress and globally prevented at undamaged replicating chromosomes.

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