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PMID: 22684279 Published · ppublish English Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

Genome-wide DNA methylation profiles in hematopoietic stem and progenitor cells reveal overrepresentation of ETS transcription factor binding sites.

Genome research ·Vol. 22 ·No. 8 ·2012-08-00 ·Pages 1407-18

Hogart A, Lichtenberg J, Ajay SS, Anderson S, NIH Intramural Sequencing Center, Margulies EH, Bodine DM

Abstract

DNA methylation is an essential epigenetic mark that is required for normal development. Knockout of the DNA methyltransferase enzymes in the mouse hematopoietic compartment reveals that methylation is critical for hematopoietic differentiation. To better understand the role of DNA methylation in hematopoiesis, we characterized genome-wide DNA methylation in primary mouse hematopoietic stem cells (HSCs), common myeloid progenitors (CMPs), and erythroblasts (ERYs). Methyl binding domain protein 2 (MBD) enrichment of DNA followed by massively parallel sequencing (MBD-seq) was used to map genome-wide DNA methylation. Globally, DNA methylation was most abundant in HSCs, with a 40% reduction in CMPs, and a 67% reduction in ERYs. Only 3% of peaks arise during differentiation, demonstrating a genome-wide decline in DNA methylation during erythroid development. Analysis of genomic features revealed that 98% of promoter CpG islands are hypomethylated, while 20%-25% of non-promoter CpG islands are methylated. Proximal promoter sequences of expressed genes are hypomethylated in all cell types, while gene body methylation positively correlates with gene expression in HSCs and CMPs. Elevated genome-wide DNA methylation in HSCs and the positive association between methylation and gene expression demonstrates that DNA methylation is a mark of cellular plasticity in HSCs. Using de novo motif discovery, we identified overrepresented transcription factor consensus binding motifs in methylated sequences. Motifs for several ETS transcription factors, including GABPA and ELF1, are overrepresented in methylated regions. Our genome-wide survey demonstrates that DNA methylation is markedly altered during myeloid differentiation and identifies critical regions of the genome and transcription factor programs that contribute to hematopoiesis.

MeSH Terms
Animals Binding Sites Cell Differentiation Chromatin Immunoprecipitation Chromosome Mapping/methods CpG Islands DNA Methylation DNA-Binding Proteins/genetics,metabolism Erythroblasts/cytology,metabolism GA-Binding Protein Transcription Factor/genetics,metabolism Gene Expression Regulation, Developmental Hematopoietic Stem Cells/cytology,metabolism Mice Myeloid Cells/cytology,metabolism Nuclear Proteins/genetics,metabolism Nucleotide Motifs Promoter Regions, Genetic Protein Binding Transcription Factors/genetics,metabolism Transcriptome
Chemicals
DNA-Binding Proteins Elf1 protein, mouse GA-Binding Protein Transcription Factor Gabpa protein, mouse Mbd2 protein, mouse Nuclear Proteins Transcription Factors
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Hogart Amber
Genetics and Molecular Biology Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Lichtenberg Jens
Ajay Subramanian S
Anderson Stacie
NIH Intramural Sequencing Center
Margulies Elliott H
Bodine David M
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Article Info
Journal
Genome research
Abbr.
Genome Res
ISSN
1549-5469
Published
2012-08-00
Epub
2012-00-08
Pages
1407-18
Language
English
Region
United States
NLM ID
9518021
PMCID
PMC3409254
Subset
IM
Grants
Intramural NIH HHS · United States
Databases
GEO
Analysis Services
Analysis Services

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