Abstract

Dnmt3a and Dnmt3b are two major de novo DNA methyltransferases essential for embryonic development in mammals. It has been shown that Dnmt3a and Dnmt3b have distinct substrate preferences for certain genomic loci, including major and minor satellite repeats. However, the exact target CpG sites where Dnmt3a and Dnmt3b catalyze DNA methylation remains largely unknown. To identify a CpG site that is specifically methylated by Dnmt3a or Dnmt3b, we screened methylated genomic loci by methylation sensitive restriction fingerprinting using genomic DNA from wild-type, Dnmt3a null, Dnmt3b null, and Dnmt3a-Dnmt3b double null ES cells. Interestingly, one of the CpG sites was preferentially methylated in wild-type and Dnmt3b null ES cells but not in Dnmt3a null or Dnmt3a-Dnmt3b double null ES cells, suggesting that the site-specific methylation was Dnmt3a-dependent. Sequencing results revealed that the isolated CpG site is located within the 1st exon of the G isoform of fibroblast growth factor (Fgf-1.G) on mouse chromosome 18. Exogenous expression of Dnmt3a but not Dnmt3b in the double null ES cells restored DNA methylation of this CpG site. When we examined alternative transcription initiation sites, we determined that another CpG site in the 5'-flanking region of the Fgf-1.A isoform was also methylated specifically by Dnmt3a. Using chimeric constructs between Dnmt3a and Dnmt3b, we further determined that the NH(2)-terminal regulatory domain of Dnmt3a was responsible for establishing its substrate specificity. These results indicate that certain CpG sites within the Fgf-1 gene locus are preferentially methylated by Dnmt3a but not by Dnmt3b. Selective methylation by a specific member of Dnmt3 may therefore play a role in the orchestration of gene expression during embryonic development.

Highlights

  • Dnmt3a disruption in male germ cells showed impaired spermatogenesis, while offspring from the Dnmt3a conditional mutant females died in utero

  • Using the methylation-sensitive restriction fingerprinting (MSRF) method, we identified a CpG site in the G isoform of the fibroblast growth factor 1 (Fgf-1) gene locus that is preferentially methylated by Dnmt3a

  • Identification of a CpG-rich DNA Sequence That Undergoes de Novo DNA Methylation by Dnmt3a during ES Cell Differentiation—To isolate a DNA locus that is methylated by Dnmt3a or Dnmt3b, we utilized MSRF using genomic DNA from wild-type, Dnmt3a null, Dnmt3b null, and Dnmt3a-Dnmt3b double null ES cells as the substrate

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Summary

Introduction

Dnmt3a disruption in male germ cells showed impaired spermatogenesis, while offspring from the Dnmt3a conditional mutant females died in utero. Digestion of the bisulfite-treated PCR fragment with BstUI showed that Dnmt3a null and Dnmt3a-Dnmt3b double null ES cells had only slight DNA methylation in the Fgf-1.G-BstUI locus when they were either undifferentiated or differentiated. These results suggest that some CpG sites within the Fgf-1 gene are preferentially methylated by Dnmt3a in vivo.

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