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Transcription factor-dependent ‘anti-repressive’ mammalian enhancers exclude H3K27me3 from extended genomic domains

Publication ,  Journal Article
Saxena, M; Roman, AKS; O'Neill, NK; Sulahian, R; Jadhav, U; Shivdasani, RA
Published in: Genes & Development
December 1, 2017

Compacted chromatin and nucleosomes are known barriers to gene expression; the nature and relative importance of other transcriptional constraints remain unclear, especially at distant enhancers. Polycomb repressor complex 2 (PRC2) places the histone mark H3K27me3 predominantly at promoters, where its silencing activity is well documented. In adult tissues, enhancers lack H3K27me3, and it is unknown whether intergenic H3K27me3 deposits affect nearby genes. In primary intestinal villus cells, we identified hundreds of tissue-restricted enhancers that require the transcription factor (TF) CDX2 to prevent the incursion of H3K27me3 from adjoining areas of elevated basal marking into large well-demarcated genome domains. Similarly, GATA1-dependent enhancers exclude H3K27me3 from extended regions in erythroid blood cells. Excess intergenic H3K27me3 in both TF-deficient tissues is associated with extreme mRNA deficits, which are significantly rescued in intestinal cells lacking PRC2. Explaining these observations, enhancers show TF-dependent binding of the H3K27 demethylase KDM6A. Thus, in diverse cell types, certain genome regions far from promoters accumulate H3K27me3, and optimal gene expression depends on enhancers clearing this repressive mark. These findings reveal new “anti-repressive” function for hundreds of tissue-specific enhancers.

Duke Scholars

Published In

Genes & Development

DOI

EISSN

1549-5477

ISSN

0890-9369

Publication Date

December 1, 2017

Volume

31

Issue

23-24

Start / End Page

2391 / 2404

Publisher

Cold Spring Harbor Laboratory

Related Subject Headings

  • Developmental Biology
  • 52 Psychology
  • 32 Biomedical and clinical sciences
  • 31 Biological sciences
  • 17 Psychology and Cognitive Sciences
  • 11 Medical and Health Sciences
  • 06 Biological Sciences
 

Citation

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Saxena, M., Roman, A. K. S., O’Neill, N. K., Sulahian, R., Jadhav, U., & Shivdasani, R. A. (2017). Transcription factor-dependent ‘anti-repressive’ mammalian enhancers exclude H3K27me3 from extended genomic domains. Genes & Development, 31(23–24), 2391–2404. https://doi.org/10.1101/gad.308536.117
Saxena, Madhurima, Adrianna K San Roman, Nicholas K. O’Neill, Rita Sulahian, Unmesh Jadhav, and Ramesh A. Shivdasani. “Transcription factor-dependent ‘anti-repressive’ mammalian enhancers exclude H3K27me3 from extended genomic domains.” Genes & Development 31, no. 23–24 (December 1, 2017): 2391–2404. https://doi.org/10.1101/gad.308536.117.
Saxena M, Roman AKS, O’Neill NK, Sulahian R, Jadhav U, Shivdasani RA. Transcription factor-dependent ‘anti-repressive’ mammalian enhancers exclude H3K27me3 from extended genomic domains. Genes & Development. 2017 Dec 1;31(23–24):2391–404.
Saxena, Madhurima, et al. “Transcription factor-dependent ‘anti-repressive’ mammalian enhancers exclude H3K27me3 from extended genomic domains.” Genes & Development, vol. 31, no. 23–24, Cold Spring Harbor Laboratory, Dec. 2017, pp. 2391–404. Crossref, doi:10.1101/gad.308536.117.
Saxena M, Roman AKS, O’Neill NK, Sulahian R, Jadhav U, Shivdasani RA. Transcription factor-dependent ‘anti-repressive’ mammalian enhancers exclude H3K27me3 from extended genomic domains. Genes & Development. Cold Spring Harbor Laboratory; 2017 Dec 1;31(23–24):2391–2404.

Published In

Genes & Development

DOI

EISSN

1549-5477

ISSN

0890-9369

Publication Date

December 1, 2017

Volume

31

Issue

23-24

Start / End Page

2391 / 2404

Publisher

Cold Spring Harbor Laboratory

Related Subject Headings

  • Developmental Biology
  • 52 Psychology
  • 32 Biomedical and clinical sciences
  • 31 Biological sciences
  • 17 Psychology and Cognitive Sciences
  • 11 Medical and Health Sciences
  • 06 Biological Sciences