Regulatory change has long been hypothesized to drive the delineation of the human phenotype from other closely related primates. Here we provide evidence that CpG dinucleotides play a special role in this process. CpGs enable epigenome variability via DNA methylation, and this epigenetic mark functions as a regulatory mechanism. Therefore, species-specific CpGs may influence species-specific regulation. We report non-polymorphic species-specific CpG dinucleotides (termed "CpG beacons") as a distinct genomic feature associated with CpG island (CGI) evolution, human traits and disease. Using an inter-primate comparison, we identified 21 extreme CpG beacon clusters (≥ 20/kb peaks, empirical p < 1.0 × 10(-3)) in humans, which include associati...
A fundamental initiative for evolutionary biologists is to understand the molecular basis underlying...
AbstractCpG dinucleotides are efficiently methylated in vertebrate genomes except in the CpG islands...
A fundamental initiative for evolutionary biologists is to understand the molecular basis underlying...
Regulatory change has long been hypothesized to drive the delineation of the human phenotype from ot...
SummaryMammalian CpG islands are key epigenomic elements that were first characterized experimentall...
The human genome contains ?30,000 CpG islands (CGIs). While CGIs associated with promoters nearly al...
Hypomethylated, CpG-rich DNA segments (CpG islands, CGIs) are epigenome markers involved in key biol...
DNA methylation patterns are important for establishing cell, tissue, and organism phenotypes, but l...
DNA methylation at CpG islands (CGIs) is one of the most intensively studied epigenetic mechanisms. ...
Cytosines at cytosine-guanine (CG) dinucleotides are the near-exclusive target of DNA methyltransfer...
AbstractMammalian genomes are punctuated by DNA sequences containing an atypically high frequency of...
DNA methylation at CpG islands (CGIs) is one of the most intensively studied epigenetic mechanisms. ...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
In vertebrates, methylation of cytosine at CpG sequences is implicated in stable and heritable patte...
A fundamental initiative for evolutionary biologists is to understand the molecular basis underlying...
AbstractCpG dinucleotides are efficiently methylated in vertebrate genomes except in the CpG islands...
A fundamental initiative for evolutionary biologists is to understand the molecular basis underlying...
Regulatory change has long been hypothesized to drive the delineation of the human phenotype from ot...
SummaryMammalian CpG islands are key epigenomic elements that were first characterized experimentall...
The human genome contains ?30,000 CpG islands (CGIs). While CGIs associated with promoters nearly al...
Hypomethylated, CpG-rich DNA segments (CpG islands, CGIs) are epigenome markers involved in key biol...
DNA methylation patterns are important for establishing cell, tissue, and organism phenotypes, but l...
DNA methylation at CpG islands (CGIs) is one of the most intensively studied epigenetic mechanisms. ...
Cytosines at cytosine-guanine (CG) dinucleotides are the near-exclusive target of DNA methyltransfer...
AbstractMammalian genomes are punctuated by DNA sequences containing an atypically high frequency of...
DNA methylation at CpG islands (CGIs) is one of the most intensively studied epigenetic mechanisms. ...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
DNA methylation is a repressive epigenetic modification that covers vertebrate genomes. Regions know...
In vertebrates, methylation of cytosine at CpG sequences is implicated in stable and heritable patte...
A fundamental initiative for evolutionary biologists is to understand the molecular basis underlying...
AbstractCpG dinucleotides are efficiently methylated in vertebrate genomes except in the CpG islands...
A fundamental initiative for evolutionary biologists is to understand the molecular basis underlying...