International audienceBackground: DNA methylation plays an important role in regulating gene expression during many biological processes. However, the mechanism of DNA-methylation-dependent gene regulation is not fully understood. Here, we explore two possible DNA methylation regulatory mechanisms with opposite modes of gene expression regulation. Results: By comparing the genome-wide methylation and expression patterns in different tissues, we find that majority of tissue-specific differentially methylated regions (T-DMRs) are negatively correlated with expression of their associated genes (negative T-DMRs), consistent with the classical dogma that DNA methylation suppresses gene expression; however, a significant portion of T-DMRs are pos...
Passive and active DNA methylation and the interplay with genetic variation in gene regulation GUTIE...
2014-09-16DNA methylation is an important epigenetic mark in the human genome. It is known as a repr...
BACKGROUND: DNA methylation is a key epigenetic modification in human development and disease, yet t...
International audienceBackground: DNA methylation plays an important role in regulating gene express...
<p>DNA methylation can affect tissue-specific gene transcription in ways that are difficult to disce...
BACKGROUND: DNA epigenetic modifications, such as methylation, are important regulators of tissue di...
BACKGROUND: DNA epigenetic modifications, such as methylation, are important regulators of tissue di...
BACKGROUND: DNA epigenetic modifications, such as methylation, are important regulators of tissue di...
Although it is known that the methylation of DNA in 5' promoters suppresses gene expression, the rol...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, May, 2020Cataloged fro...
DNA methylation is an epigenetic mark that is deposited throughout the genome of mammals and plays a...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
International audienceThe exact role of intragenic DNA methylation in regulating tissue-specific gen...
Copyright: © Jjingo et al. This is an open-access article distributed under the terms of the Creati...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
Passive and active DNA methylation and the interplay with genetic variation in gene regulation GUTIE...
2014-09-16DNA methylation is an important epigenetic mark in the human genome. It is known as a repr...
BACKGROUND: DNA methylation is a key epigenetic modification in human development and disease, yet t...
International audienceBackground: DNA methylation plays an important role in regulating gene express...
<p>DNA methylation can affect tissue-specific gene transcription in ways that are difficult to disce...
BACKGROUND: DNA epigenetic modifications, such as methylation, are important regulators of tissue di...
BACKGROUND: DNA epigenetic modifications, such as methylation, are important regulators of tissue di...
BACKGROUND: DNA epigenetic modifications, such as methylation, are important regulators of tissue di...
Although it is known that the methylation of DNA in 5' promoters suppresses gene expression, the rol...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, May, 2020Cataloged fro...
DNA methylation is an epigenetic mark that is deposited throughout the genome of mammals and plays a...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
International audienceThe exact role of intragenic DNA methylation in regulating tissue-specific gen...
Copyright: © Jjingo et al. This is an open-access article distributed under the terms of the Creati...
DNA methylation is one of the most extensively studied epigenetic marks. It is involved in transcrip...
Passive and active DNA methylation and the interplay with genetic variation in gene regulation GUTIE...
2014-09-16DNA methylation is an important epigenetic mark in the human genome. It is known as a repr...
BACKGROUND: DNA methylation is a key epigenetic modification in human development and disease, yet t...