Mutations in the gene encoding the methyl-CG binding protein MeCP2 cause several neurological disorders including Rett syndrome. The di-nucleotide methyl-CG (mCG) is the classical MeCP2 DNA recognition sequence, but additional methylated sequence targets have been reported. Here we show by in vitro and in vivo analyses that MeCP2 binding to non-CG methylated sites in brain is largely confined to the tri-nucleotide sequence mCAC. MeCP2 binding to chromosomal DNA in mouse brain is proportional to mCAC + mCG density and unexpectedly defines large genomic domains within which transcription is sensitive to MeCP2 occupancy. Our results suggest that MeCP2 integrates patterns of mCAC and mCG in the brain to restrain transcription of genes critical ...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
MeCP2 is a reader of the DNA methylome that occupies a large proportion of the genome due to its hig...
Mutations in the methyl-DNA-binding repressor protein MeCP2 cause the devastating neurodevelopmental...
Mutations in the gene encoding the methyl-CG binding protein MeCP2 cause several neurological disord...
Mutations in the gene encoding the methyl-CG binding protein MeCP2 cause several neurological disord...
Mutations in the gene encoding the methyl-CG binding protein MeCP2 cause several neurological disord...
MeCP2 was initially identified as an abundant protein in the brain, with an affinity for methylated ...
DNA methylation is implicated in neuronal biology via the protein MeCP2, the mutation of which cause...
AbstractMethylation of genomic CpG residues is crucial for proper neuronal function. Rett syndrome, ...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
Disruption of the MECP2 gene leads to Rett syndrome (RTT), a severe neurological disorder with featu...
Background: Rett syndrome (RTT) is a complex neurological disorder that is one of the most frequent ...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
Mutations in the gene encoding methyl-CpG-binding protein 2 (MeCP2) lead to disrupted neuronal funct...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
MeCP2 is a reader of the DNA methylome that occupies a large proportion of the genome due to its hig...
Mutations in the methyl-DNA-binding repressor protein MeCP2 cause the devastating neurodevelopmental...
Mutations in the gene encoding the methyl-CG binding protein MeCP2 cause several neurological disord...
Mutations in the gene encoding the methyl-CG binding protein MeCP2 cause several neurological disord...
Mutations in the gene encoding the methyl-CG binding protein MeCP2 cause several neurological disord...
MeCP2 was initially identified as an abundant protein in the brain, with an affinity for methylated ...
DNA methylation is implicated in neuronal biology via the protein MeCP2, the mutation of which cause...
AbstractMethylation of genomic CpG residues is crucial for proper neuronal function. Rett syndrome, ...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
Disruption of the MECP2 gene leads to Rett syndrome (RTT), a severe neurological disorder with featu...
Background: Rett syndrome (RTT) is a complex neurological disorder that is one of the most frequent ...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
Mutations in the gene encoding methyl-CpG-binding protein 2 (MeCP2) lead to disrupted neuronal funct...
The importance of DNA methylation in neuronal function is highlighted by mutations in the neuronally...
MeCP2 is a reader of the DNA methylome that occupies a large proportion of the genome due to its hig...
Mutations in the methyl-DNA-binding repressor protein MeCP2 cause the devastating neurodevelopmental...