Abstract
Methylated DNA in vertebrates is associated with transcriptional repression and inactive chromatin. Two activities have been identified, MeCP1 and MeCP2, which bind specifically to DNA containing methyl-CpG pairs. In this report we characterize MeCP2. We show that it is more abundant than MeCP1, is more tightly bound in the nucleus, and is distinguishable chromatographically. The two proteins share widespread expression in somatic mammalian cells, and barely detectable expression in early embryonic cells. DNAs containing thymidine which has a methyl group at position 5 are not ligands for the MeCPs. The possible role of MeCP2 in methylation-associated gene inactivation was tested in in vitro transcription extracts. Purified MeCP2 inhibited transcription from both methylated and nonmethylated DNA templates in vitro, probably due to the presence of nonspecific DNA binding domains within the protein. We hypothesise that MeCP2 normally binds methylated DNA in the context of chromatin, contributing to the long-term repression and nuclease-resistance of methyl-CpGs.
MeSH Terms
Animals
Base Sequence
Brain/metabolism
Cell Line
Cell Nucleus/metabolism
Chickens
Chromatography, Affinity
Chromosomal Proteins, Non-Histone
DNA/metabolism
DNA-Binding Proteins/isolation & purification,metabolism
Histone Deacetylases
Immunoblotting
Indicators and Reagents
Methyl-CpG-Binding Protein 2
Methylation
Mice
Molecular Sequence Data
Rats
Repressor Proteins
Substrate Specificity
Transcription, Genetic
Chemicals
Chromosomal Proteins, Non-Histone
DNA-Binding Proteins
Indicators and Reagents
MeCP1 histone deacetylase complex, mouse
MeCP1 histone deacetylase complex, rat
Mecp2 protein, mouse
Mecp2 protein, rat
Methyl-CpG-Binding Protein 2
Repressor Proteins
DNA
Histone Deacetylases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Meehan R R
Institute of Cell and Molecular Biology, University of Edinburgh, UK.
Lewis J D
Bird A P
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