Cell-type selective chromatin remodeling defines the active subset of FOXA1-bound enhancers

  1. Jérôme Eeckhoute1,
  2. Mathieu Lupien2,
  3. Clifford A. Meyer3,
  4. Michael P. Verzi2,
  5. Ramesh A. Shivdasani2,
  6. X. Shirley Liu3 and
  7. Myles Brown2,4
  1. 1 Université de Rennes I, CNRS, UMR 6026, Equipe SPARTE, Campus de Beaulieu, 35042 Rennes cedex, France;
  2. 2 Division of Molecular and Cellular Oncology, Department of Medical Oncology, Dana-Farber Cancer Institute and Department of Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA;
  3. 3 Department of Biostatistics and Computational Biology, Dana-Farber Cancer Institute and Harvard School of Public Health, Boston, Massachusetts 02115, USA

    Abstract

    Selective activity of a specific set of enhancers defines tissue-specific gene transcription. The pioneer factor FOXA1 has been shown to induce functional enhancer competency through chromatin openings. We have previously found that FOXA1 is recruited to thousands of regions across the genome of a given cell type. Here, we monitored the chromatin structure at FOXA1 binding sites on a chromosome-wide scale using formaldehyde assisted isolation of regulatory elements (FAIRE). Surprisingly, we find that a significant fraction of FOXA1-bound sites have a relatively closed chromatin conformation linked to a shift of the epigenetic signature toward repressive histone marks. Importantly, these sites are not correlated with gene expression in a given cell type suggesting that FOXA1 is required, but not sufficient, for the functional activity of bound enhancers. Interestingly, we find that a significant proportion of the inactive FOXA1-bound regulatory sites in one cell type are actually functional in another cellular context. We found that at least half of the FOXA1 binding sites from a given cell type are shared with another cell lineage. Mechanisms that restrict the activity of shared FOXA1-bound enhancers likely play a significant role in defining the cell-type-specific functions of FOXA1.

    Footnotes

    • 4 Corresponding author.

      E-mail myles_brown{at}dfci.harvard.edu; fax (617) 632-8501.

    • [Supplemental material is available online at www.genome.org. ChIP-chip and FAIRE-chip data have been submitted to the Gene Expression Omnibus (GEO) database (http://www.ncbi.nlm.nih.gov/geo/) under accession nos. GSE12801 and GSE11579.]

    • Article published online before print. Article and publication date are at http://www.genome.org/cgi/doi/10.1101/gr.084582.108.

      • Received August 8, 2008.
      • Accepted December 16, 2008.
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