4.7 Article

Cfp1 integrates both CpG content and gene activity for accurate H3K4me3 deposition in embryonic stem cells

Journal

GENES & DEVELOPMENT
Volume 26, Issue 15, Pages 1714-1728

Publisher

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gad.194209.112

Keywords

epigenetics; chromatin; H3K4me3; Cfp1; CpG islands

Funding

  1. Wellcome Trust [091580]
  2. Medical Research Council UK [G0800401]
  3. Cancer Research UK [C1295/A9590]
  4. Medical Research Council [G0800026, G0800401] Funding Source: researchfish
  5. MRC [G0800026] Funding Source: UKRI

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Trimethylation of histone H3 Lys 4 (H3K4me3) is a mark of active and poised promoters. The Set1 complex is responsible for most somatic H3K4me3 and contains the conserved subunit CxxC finger protein 1 (Cfp1), which binds to unmethylated CpGs and links H3K4me3 with CpG islands (CGIs). Here we report that Cfp1 plays unanticipated roles in organizing genome-wide H3K4me3 in embryonic stem cells. Cfp1 deficiency caused two contrasting phenotypes: drastic loss of H3K4me3 at expressed CGI-associated genes, with minimal consequences for transcription, and creation of ectopic'' H3K4me3 peaks at numerous regulatory regions. DNA binding by Cfp1 was dispensable for targeting H3K4me3 to active genes but was required to prevent ectopic H3K4me3 peaks. The presence of ectopic peaks at enhancers often coincided with increased expression of nearby genes. This suggests that CpG targeting prevents leakage'' of H3K4me3 to inappropriate chromatin compartments. Our results demonstrate that Cfp1 is a specificity factor that integrates multiple signals, including promoter CpG content and gene activity, to regulate genome-wide patterns of H3K4me3.

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