4.8 Article

BRPF3-HBO1 regulates replication origin activation and histone H3K14 acetylation

期刊

EMBO JOURNAL
卷 35, 期 2, 页码 176-192

出版社

WILEY
DOI: 10.15252/embj.201591293

关键词

BRPF; DNA replication; HBO1; H3K14ac; origin activation

资金

  1. Lundbeck Foundation postdoc grant
  2. Danish National Research Foundation [DNRF82]
  3. European Commission ITN FP7 Nucleosome4D and aDDRess, a European Research Council Starting Grant [ERC2011StG, 281,765]
  4. Danish Cancer Society
  5. Danish Medical Research Foundation
  6. Novo Nordisk Foundation
  7. Lundbeck Foundation
  8. FP7 Marie Curie Actions ITN Nucleosome4D
  9. Canadian Institutes of Health Research (CIHR) [MOP-123322, MOP-64289]
  10. Lundbeck Foundation [R22-2007-1245] Funding Source: researchfish

向作者/读者索取更多资源

During DNA replication, thousands of replication origins are activated across the genome. Chromatin architecture contributes to origin specification and usage, yet it remains unclear which chromatin features impact on DNA replication. Here, we perform a RNAi screen for chromatin regulators implicated in replication control by measuring RPA accumulation upon replication stress. We identify six factors required for normal rates of DNA replication and characterize a function of the bromodomain and PHD finger-containing protein 3 (BRPF3) in replication initiation. BRPF3 forms a complex with HBO1 that specifically acetylates histone H3K14, and genomewide analysis shows high enrichment of BRPF3, HBO1 and H3K14ac at ORC1-binding sites and replication origins found in the vicinity of TSSs. Consistent with this, BRPF3 is necessary for H3K14ac at selected origins and efficient origin activation. CDC45 recruitment, but not MCM2-7 loading, is impaired in BRPF3-depleted cells, identifying a BRPF3-dependent function of HBO1 in origin activation that is complementary to its role in licencing. We thus propose that BRPF3-HBO1 acetylation of histone H3K14 around TSS facilitates efficient activation of nearby replication origins.

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