BACKGROUND: DNA methylation has been recognized as a key mechanism in cell differentiation. Various studies have compared tissues to characterize epigenetically regulated genomic regions, but due to differences in study design and focus there still is no consensus as to the annotation of genomic regions predominantly involved in tissue-specific methylation. We used a new algorithm to identify and annotate tissue-specific differentially methylated regions (tDMRs) from Illumina 450k chip data for four peripheral tissues (blood, saliva, buccal swabs and hair follicles) and six internal tissues (liver, muscle, pancreas, subcutaneous fat, omentum and spleen with matched blood samples). RESULTS: The majority of tDMRs, in both relative and absolut...
<p>Averaged digestion frequencies were profiled for each tissue and depicted with the UCSC genome br...
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic ...
Epigenetic mechanisms such as histone modifications and DNA methylation extend the information of th...
Background: DNA methylation has been recognized as a key mechanism in cell differentiation. Various ...
Background: DNA methylation has been recognized as a key mechanism in cell differentiation. Various ...
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...
We report a novel resource (methylation profiles of DNA, or mPod) for human genome-wide tissue-speci...
Background:Dynamic changes to the epigenome play a critical role in establishing and maintaining cel...
Tissue specific differentially methylated regions (TDMRs) were identified and localized in the mouse...
AbstractAlterations in DNA methylation have been implicated in mammalian development. Hence, the ide...
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic ...
AbstractTissue specific differentially methylated regions (TDMRs) were identified and localized in t...
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic ...
<p>Averaged digestion frequencies were profiled for each tissue and depicted with the UCSC genome br...
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic ...
Epigenetic mechanisms such as histone modifications and DNA methylation extend the information of th...
Background: DNA methylation has been recognized as a key mechanism in cell differentiation. Various ...
Background: DNA methylation has been recognized as a key mechanism in cell differentiation. Various ...
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...
We report a novel resource (methylation profiles of DNA, or mPod) for human genome-wide tissue-speci...
Background:Dynamic changes to the epigenome play a critical role in establishing and maintaining cel...
Tissue specific differentially methylated regions (TDMRs) were identified and localized in the mouse...
AbstractAlterations in DNA methylation have been implicated in mammalian development. Hence, the ide...
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic ...
AbstractTissue specific differentially methylated regions (TDMRs) were identified and localized in t...
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic ...
<p>Averaged digestion frequencies were profiled for each tissue and depicted with the UCSC genome br...
Understanding the diversity of human tissues is fundamental to disease and requires linking genetic ...
Epigenetic mechanisms such as histone modifications and DNA methylation extend the information of th...