Transcriptional repressive H3K9 and H3K27 methylations contribute to DNMT1-mediated DNA methylation recovery

PLoS One. 2011 Feb 8;6(2):e16702. doi: 10.1371/journal.pone.0016702.

Abstract

DNA methylation and histone modifications are two major epigenetic events regulating gene expression and chromatin structure, and their alterations are linked to human carcinogenesis. DNA methylation plays an important role in tumor suppressor gene inactivation, and can be revised by DNA methylation inhibitors. The reversible nature of DNA methylation forms the basis of epigenetic cancer therapy. However, it has been reported that DNA re-methylation and gene re-silencing could occur after removal of demethylation treatment and this may significantly hamper the therapeutic value of DNA methylation inhibitors. In this study we have provided detailed evidence demonstrating that mammalian cells possess a bona fide DNA methylation recovery system. We have also shown that DNA methylation recovery was mediated by the major human DNA methyltransferase, DNMT1. In addition, we found that H3K9-tri-methylation and H3K27-tri-methylation were closely associated with this DNA methylation recovery. These persistent transcriptional repressive histone modifications may have a crucial role in regulating DNMT1-mediated DNA methylation recovery. Our findings may have important implications towards a better understanding of epigenetic regulation and future development of epigenetic therapeutic intervention.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Azacitidine / analogs & derivatives
  • Azacitidine / pharmacology
  • DNA (Cytosine-5-)-Methyltransferase 1
  • DNA (Cytosine-5-)-Methyltransferases / metabolism*
  • DNA Methylation / drug effects
  • DNA Methylation / genetics*
  • Decitabine
  • GTPase-Activating Proteins / genetics
  • Gene Silencing* / drug effects
  • Genetic Loci / genetics
  • HCT116 Cells
  • HeLa Cells
  • Histones / chemistry*
  • Histones / metabolism*
  • Humans
  • Lysine / metabolism*
  • Stochastic Processes
  • Transcription, Genetic / drug effects
  • Transcription, Genetic / genetics*
  • Tumor Suppressor Proteins / genetics

Substances

  • DLC1 protein, human
  • GTPase-Activating Proteins
  • Histones
  • Tumor Suppressor Proteins
  • Decitabine
  • DNA (Cytosine-5-)-Methyltransferase 1
  • DNA (Cytosine-5-)-Methyltransferases
  • DNMT1 protein, human
  • Lysine
  • Azacitidine