Medical Journals

Differential Recruitment of Methylated Cpg Binding Domains by the Orphan Receptor Gcnf Initiates the Repression and Silencing of Oct4 Expression.

Authors:
  • Gu Peili
  • Le Menuet Damien
  • Chung Arthur C-K
  • Cooney Austin J

From: Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX 77030, USA.

Molecular and cellular biology

  • Publish Date: Dec 2006
  • ISSN: 0270-7306
  • Volume: 26
  • Issue: 24
  • Pages: 9471-83
  • Medium: Print
  • Language: English
  • Citation (JAMA): Gu Peili, Le Menuet Damien, Chung Arthur C-K, et al. Differential Recruitment of Methylated Cpg Binding Domains by the Orphan Receptor Gcnf Initiates the Repression and Silencing of Oct4 Expression.. Mol. Cell. Biol. Dec 2006;26:9471-83

Abstract

The pluripotent factor Oct4 is a key transcription factor that maintains embryonic stem (ES) cell self-renewal and is down-regulated upon the differentiation of ES cells and silenced in somatic cells. A combination of cis elements, transcription factors, and epigenetic modifications, such as DNA methylation, are involved in the regulation of Oct4 gene expression. Here we show that the orphan nuclear receptor GCNF initiates Oct4 repression and DNA methylation by the differential recruitment of MBD (methylated CpG binding domain) factors to the promoter. Compared with wild-type ES cells and gastrulating embryos, Oct4 repression is lost and its proximal promoter is significantly hypomethylated in RA-differentiated GCNF(-/-) ES cells. The Oct4 gene is reexpressed in some somatic cells of GCNF(-/-) embryos, showing that it has not been properly silenced coincident with reduced DNA methylation of its promoter. Efforts to characterize mediators of GCNF’s repressive function and DNA methylation of the Oct4 promoter identified methyl-DNA binding proteins, MBD3 and MBD2, as GCNF-interacting factors. In P19 and ES cells, upon differentiation, endogenous GCNF binds to the Oct4 proximal promoter and differentially recruits MBD3 and MBD2. In differentiated GCNF(-/-) ES cells, recruitment of MBD3 and MBD2 to the Oct4 promoter is lost, and repression of Oct4 expression and DNA methylation fails to occur. RNA interference-mediated knockdown of MBD3 and/or MBD2 expression results in reduced Oct4 repression in differentiated P19 and ES cells. Repression of Oct4 expression and recruitment of MBD3 are maintained in de novo DNA methylation-deficient ES cells (Dnmt3A/3B-null cells), while MBD2 recruitment is lost. Thus, recruitment of MBD3 and MBD2 by GCNF links two events, gene-specific repression and DNA methylation, which occur differentially at the Oct4 promoter. GCNF initiates the repression and epigenetic modification of Oct4 gene during ES cell differentiation.

Mesh Headings (Keywords): Amino Acid Sequence, Animals, Binding Sites, Cell Differentiation, Cell Line, Tumor, CpG Islands, DNA Methylation, DNA-Binding Proteins, Embryonic Stem Cells, Gene Expression Regulation, Developmental, Gene Silencing, Mice, Mice, Knockout, Molecular Sequence Data, Octamer Transcription Factor-3, Protein Binding, Protein Structure, Tertiary, Protein Transport, Receptors, Cytoplasmic and Nuclear


Check for Full Text / PubMed Unique Identifier (PMID): 17030610


This abstract is part of PubMed, a service of the U.S. National Library of Medicine. PubMed includes more than 17 million citations from MEDLINE and other life science journals for biomedical articles. See Copyright and Disclaimers.

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The data herein was last updated on July 8th, 2008 and may not reflect the most current and accurate data available from NLM.


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