Background: DNA methylation is of pivotal importance during development. Previous genome-wide studies identified numerous differentially methylated regions upon differentiation of stem cells, many of them associated with transcriptional start sites. Results: We present the first genome-wide, single-base-resolution view into DNA methylation dynamics during differentiation of a mammalian epithelial stem cell: the mouse small intestinal Lgr5+ stem cell. Very little change was observed at transcriptional start sites and our data suggest that differentiation-related genes are already primed for expression in the stem cell. Genome-wide, only 50 differentially methylated regions were identified. Almost all of these loci represent enhancers driving...
<div><p>DNA methylation changes dynamically during development and is essential for embryogenesis in...
SUMMARY Mesenchymal stem cells (MSCs) have been identified in several adult tissues and have the abi...
Cellular differentiation involves widespread epigenetic reprogramming, including modulation of DNA m...
Mouse models of intestinal crypt cell differentiation and tumorigenesis have been used to characteri...
DNA methylation at the 5 position of cytosine is a well-characterized epigenetic modification that i...
DNA methylation at the 5 position of cytosine is a well-characterized epigenetic modification that i...
DNA methylation is a mechanism of epigenetic regulation that is common to all vertebrates. Functiona...
In mammals, cellular identity is defined through strict regulation of chromatin modifications and DN...
Mouse models of intestinal crypt cell differentiation and tumorigenesis have been used to characteri...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
OBJECTIVE: Human intestinal epithelial organoids (IEOs) are increasingly being recognised as a highl...
Cytosine hydroxymethylation (5hmC) in mammalian DNA is the product of oxidation of methylated cytosi...
Embryogenesis is tightly regulated by multiple levels of epigenetic regulation such as DNA methylati...
AbstractThe intestinal epithelium is a particularly attractive biological adult model to study epige...
Chromatin regulation plays a role in establishing and maintaining cell identity, and is generally hi...
<div><p>DNA methylation changes dynamically during development and is essential for embryogenesis in...
SUMMARY Mesenchymal stem cells (MSCs) have been identified in several adult tissues and have the abi...
Cellular differentiation involves widespread epigenetic reprogramming, including modulation of DNA m...
Mouse models of intestinal crypt cell differentiation and tumorigenesis have been used to characteri...
DNA methylation at the 5 position of cytosine is a well-characterized epigenetic modification that i...
DNA methylation at the 5 position of cytosine is a well-characterized epigenetic modification that i...
DNA methylation is a mechanism of epigenetic regulation that is common to all vertebrates. Functiona...
In mammals, cellular identity is defined through strict regulation of chromatin modifications and DN...
Mouse models of intestinal crypt cell differentiation and tumorigenesis have been used to characteri...
DNA methylation patterns change dynamically during mammalian development and lineage specification, ...
OBJECTIVE: Human intestinal epithelial organoids (IEOs) are increasingly being recognised as a highl...
Cytosine hydroxymethylation (5hmC) in mammalian DNA is the product of oxidation of methylated cytosi...
Embryogenesis is tightly regulated by multiple levels of epigenetic regulation such as DNA methylati...
AbstractThe intestinal epithelium is a particularly attractive biological adult model to study epige...
Chromatin regulation plays a role in establishing and maintaining cell identity, and is generally hi...
<div><p>DNA methylation changes dynamically during development and is essential for embryogenesis in...
SUMMARY Mesenchymal stem cells (MSCs) have been identified in several adult tissues and have the abi...
Cellular differentiation involves widespread epigenetic reprogramming, including modulation of DNA m...