Understanding the mechanisms that regulate cell type-specific transcriptional programs requires developing a lexicon of their genomic regulatory elements. We developed a lineage-selective method to map transcriptional enhancers, regulatory genomic regions that activate transcription, in mice. Since most tissue-specific enhancers are bound by the transcriptional co-activator Ep300, we used Cre-directed, lineage-specific Ep300 biotinylation and pulldown on immobilized streptavidin followed by next generation sequencing of co-precipitated DNA to identify lineage-specific enhancers. By driving this system with lineage-specific Cre transgenes, we mapped enhancers active in embryonic endothelial cells/blood or skeletal muscle. Analysis of these e...
In this special edition of Genomics, we present reviews of the current state of the field in identif...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
Mapping the chromatin occupancy of transcription factors (TFs) is a key step in deciphering developm...
Understanding the mechanisms that regulate cell type-specific transcriptional programs requires deve...
Epigenetic modifications, transcription factor (TF) availability and chromatin conformation influenc...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
Abstract Background Epigenetic modifications, transcr...
SummaryUnderstanding the regulation of human gene expression requires knowledge of the “second genet...
The activation of tissue specific genes relies upon the precise orchestration of a number of events ...
textabstractEnhancers are genetic elements that regulate spatiotemporal gene expression. Enhancer fu...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
In this special edition of Genomics, we present reviews of the current state of the field in identif...
A major challenge in human genetics is to understand the mechanisms that control gene expression. To...
The accurate and comprehensive identification of functional regulatory sequences in mammalian genome...
In this special edition of Genomics, we present reviews of the current state of the field in identif...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
Mapping the chromatin occupancy of transcription factors (TFs) is a key step in deciphering developm...
Understanding the mechanisms that regulate cell type-specific transcriptional programs requires deve...
Epigenetic modifications, transcription factor (TF) availability and chromatin conformation influenc...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
Abstract Background Epigenetic modifications, transcr...
SummaryUnderstanding the regulation of human gene expression requires knowledge of the “second genet...
The activation of tissue specific genes relies upon the precise orchestration of a number of events ...
textabstractEnhancers are genetic elements that regulate spatiotemporal gene expression. Enhancer fu...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
In this special edition of Genomics, we present reviews of the current state of the field in identif...
A major challenge in human genetics is to understand the mechanisms that control gene expression. To...
The accurate and comprehensive identification of functional regulatory sequences in mammalian genome...
In this special edition of Genomics, we present reviews of the current state of the field in identif...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
Mapping the chromatin occupancy of transcription factors (TFs) is a key step in deciphering developm...