AbstractThe primary target for DNA methylation in mammalian genomes is cytosine in the dinucleotide CpG. High densities of CpG dinucleotides are found in CpG islands, but paradoxically CpG islands are normally in a non-methylated state. Here, we speculate why CpG islands are immune to methylation and why they are so rich in guanine and cytosine relative to the surrounding DNA. We propose that CpG islands are associated with promoters that are transcriptionally active at totipotent stages of development and can also act as origins of DNA replication. CpG islands may be ‘footprints’ caused by early DNA replication intermediates at dual function promoters of this kind
A key open question in the understanding of the biology of DNA methylation relates to the origin and...
SummaryMammalian CpG islands are key epigenomic elements that were first characterized experimentall...
methylation is the C5 position of cytosine at the CpG dinucleotides. About 70 % of CpG dinucleotides...
AbstractThe primary target for DNA methylation in mammalian genomes is cytosine in the dinucleotide ...
DNA methylation is the epigenetic modification,which introduces 5mC as fifth base onto DNA. As for t...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
Published 28 June 2016Methylation of mammalian DNA occurs primarily at CG dinucleotides. These CpG s...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
SummaryMammalian CpG islands are key epigenomic elements that were first characterized experimentall...
AbstractMammalian genomes are punctuated by DNA sequences containing an atypically high frequency of...
Cytosines at cytosine-guanine (CG) dinucleotides are the near-exclusive target of DNA methyltransfer...
CpG islands often exhibit low DNA methylation, high histone H3 lysine 4 trimethylation, low nucleoso...
DNA methylation is thought to play an important role in the regulation of mammalian gene expression....
CpG islands often exhibit low DNA methylation, high histone H3 lysine 4 trimethylation, low nucleoso...
CpG islands often exhibit low DNA methylation, high histone H3 lysine 4 trimethylation, low nucleoso...
A key open question in the understanding of the biology of DNA methylation relates to the origin and...
SummaryMammalian CpG islands are key epigenomic elements that were first characterized experimentall...
methylation is the C5 position of cytosine at the CpG dinucleotides. About 70 % of CpG dinucleotides...
AbstractThe primary target for DNA methylation in mammalian genomes is cytosine in the dinucleotide ...
DNA methylation is the epigenetic modification,which introduces 5mC as fifth base onto DNA. As for t...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
Published 28 June 2016Methylation of mammalian DNA occurs primarily at CG dinucleotides. These CpG s...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
SummaryMammalian CpG islands are key epigenomic elements that were first characterized experimentall...
AbstractMammalian genomes are punctuated by DNA sequences containing an atypically high frequency of...
Cytosines at cytosine-guanine (CG) dinucleotides are the near-exclusive target of DNA methyltransfer...
CpG islands often exhibit low DNA methylation, high histone H3 lysine 4 trimethylation, low nucleoso...
DNA methylation is thought to play an important role in the regulation of mammalian gene expression....
CpG islands often exhibit low DNA methylation, high histone H3 lysine 4 trimethylation, low nucleoso...
CpG islands often exhibit low DNA methylation, high histone H3 lysine 4 trimethylation, low nucleoso...
A key open question in the understanding of the biology of DNA methylation relates to the origin and...
SummaryMammalian CpG islands are key epigenomic elements that were first characterized experimentall...
methylation is the C5 position of cytosine at the CpG dinucleotides. About 70 % of CpG dinucleotides...