DNA methylation is an epigenetic mark that is deposited throughout the genome of mammals and plays an important role in the maintenance of transcriptionally repressive states across cell divisions. There are two major mechanisms by which DNA methylation has been proposed to act: one involves the recognition of the mark by protein complexes containing histone deacetylases (HDACs) that can remodel the local chromatin. Alternatively, methylation has been suggested to directly affect the interaction between transcription factors and their cognate binding sequence. The aim of this research was to determine the contributions of these two mechanisms in cells. The importance of HDAC activity in mediating DNA methylation-dependent transcriptional ...
<div><p>Distal regulatory elements, including enhancers, play a critical role in regulating gene act...
Distal regulatory elements, including enhancers, play a critical role in regulating gene activity. T...
Transcriptional regulation in eukaryotes is realized through intricate interactions between transcri...
DNA methylation is an epigenetic mark that is deposited throughout the genome of mammals and plays a...
Epigenetic modifications on chromatin play important roles in regulating gene expression. Although c...
SummaryDNA methylation is one of a number of modes of epigenetic gene regulation. Here, we profile t...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
In mammals, the correct spatio-temporal patterns of gene expression are coordinated by transcriptio...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
2014-09-16DNA methylation is an important epigenetic mark in the human genome. It is known as a repr...
Transcription factor occupancy can mediate active turnover of DNA methylation at regulatory regions ...
DNA methylation is one of a number of modes of epigenetic gene regulation. Here, we profile the DNA ...
Distal regulatory elements, including enhancers, play a critical role in regulating gene activity. T...
<div><p>Distal regulatory elements, including enhancers, play a critical role in regulating gene act...
Distal regulatory elements, including enhancers, play a critical role in regulating gene activity. T...
Transcriptional regulation in eukaryotes is realized through intricate interactions between transcri...
DNA methylation is an epigenetic mark that is deposited throughout the genome of mammals and plays a...
Epigenetic modifications on chromatin play important roles in regulating gene expression. Although c...
SummaryDNA methylation is one of a number of modes of epigenetic gene regulation. Here, we profile t...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
In mammals, the correct spatio-temporal patterns of gene expression are coordinated by transcriptio...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
2014-09-16DNA methylation is an important epigenetic mark in the human genome. It is known as a repr...
Transcription factor occupancy can mediate active turnover of DNA methylation at regulatory regions ...
DNA methylation is one of a number of modes of epigenetic gene regulation. Here, we profile the DNA ...
Distal regulatory elements, including enhancers, play a critical role in regulating gene activity. T...
<div><p>Distal regulatory elements, including enhancers, play a critical role in regulating gene act...
Distal regulatory elements, including enhancers, play a critical role in regulating gene activity. T...
Transcriptional regulation in eukaryotes is realized through intricate interactions between transcri...