Scinovex
article Open AccessTop 1% cited

Genomewide Analysis of PRC1 and PRC2 Occupancy Identifies Two Classes of Bivalent Domains

PLoS Genetics · 2008 · Vol. 4(10) · pp. e1000242–e1000242
Manching KuRichard P. KocheEsther RheinbayEric M. MendenhallMitsuhiro EndohTarjei S. MikkelsenAviva PresserChad NusbaumXiaohui XieS. AndrewMazhar AdliSimon KasifLeon M. PtaszekChad A. CowanEric S. LanderHaruhiko KosekiB Bernstein

Abstract

In embryonic stem (ES) cells, bivalent chromatin domains with overlapping repressive (H3 lysine 27 tri-methylation) and activating (H3 lysine 4 tri-methylation) histone modifications mark the promoters of more than 2,000 genes. To gain insight into the structure and function of bivalent domains, we mapped key histone modifications and subunits of Polycomb-repressive complexes 1 and 2 (PRC1 and PRC2) genomewide in human and mouse ES cells by chromatin immunoprecipitation, followed by ultra high-throughput sequencing. We find that bivalent domains can be segregated into two classes -- the first occupied by both PRC2 and PRC1 (PRC1-positive) and the second specifically bound by PRC2 (PRC2-only). PRC1-positive bivalent domains appear functionally distinct as they more efficiently retain lysine 27 tri-methylation upon differentiation, show stringent conservation of chromatin state, and associate with an overwhelming number of developmental regulator gene promoters. We also used computational genomics to search for sequence determinants of Polycomb binding. This analysis revealed that the genomewide locations of PRC2 and PRC1 can be largely predicted from the locations, sizes, and underlying motif contents of CpG islands. We propose that large CpG islands depleted of activating motifs confer epigenetic memory by recruiting the full repertoire of Polycomb complexes in pluripotent cells.

Epigenetics and DNA MethylationCancer-related gene regulationGenomics and Chromatin DynamicsPRC2BiologyChromatinPolycomb-group proteinsEpigeneticsBivalent (engine)DNA methylationGeneticsBivalent chromatinHistone

MeSH terms

AnimalsChromatinChromosome MappingHistonesHumansMethylationOxidoreductases, N-DemethylatingPromoter Regions, GeneticRepressor ProteinsGenome, HumanGenomeProtein Structure, TertiaryCpG IslandsComputational BiologyPluripotent Stem Cells

Funding

  • Burroughs Wellcome Fund
  • Massachusetts General Hospital
  • Broad Institute
  • Croucher Foundation
  • National Institutes of Health
  • Harvard Stem Cell Institute
  • National Human Genome Research Institute
  • National Cancer Institute
Citations
995
FWCI
30.07
field-weighted impact
References
66
Percentile
100%
vs. same field & year
Citations per year
Cited by
CpG islands and the regulation of transcription
Genes & Development · 2011 · 3,188 citations
The diverse roles of DNA methylation in mammalian development and disease
Nature Reviews Molecular Cell Biology · 2019 · 2,131 citations
Transcriptional regulation by Polycomb group proteins
Nature Structural & Molecular Biology · 2013 · 879 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.