Tissues may adopt diverse strategies to establish specific transcriptional programs in daughter lineages. In intestinal crypts, enhancers for genes expressed in both major cell types appear broadly permissive in stem and specified progenitor cells. In blood, another self-renewing tissue, it is unclear when chromatin becomes permissive for transcription of genes expressed in distinct terminal lineages. Using chromatin immunoprecipitation (ChIP) combined with deep sequencing (ChIP-seq) to profile activating histone marks, we studied enhancer dynamics in primary mouse blood stem, progenitor, and specified cells. Stem and multipotent progenitor cells show scant H3K4me2 marking at enhancers bound by specific transcription factors in their commit...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
The mechanisms underlying enhancer activation and the extent to which enhancer–promoter rewiring con...
textabstractEnhancers are genetic elements that regulate spatiotemporal gene expression. Enhancer fu...
Heritable epigenetic signatures are proposed to serve as an important regulatory mechanism in lineag...
SummaryHistone modifications have been implicated in stem cell maintenance and differentiation. We h...
SummaryEnhancers are the primary determinants of cell identity, but the regulatory components contro...
International audienceGenome-wide approaches allow investigating the molecular circuitry wiring the ...
Abstract Background Epigenetic modifications, transcr...
The emergence of post-genomic approaches that couple chromatin immunoprecipitation (ChIP) assays to ...
Background Lifelong production of the many types of mature blood cells from less di...
The emerging notion of hematopoietic stem and progenitor cells (HSPCs) as a low-primed cloud without...
In the mouse, blood cells are derived from mesodermal precursors with dual angiogenic and hematopoie...
In mammals, cellular identity is defined through strict regulation of chromatin modifications and DN...
Enhancers are the primary determinants of cell identity, but the regulatory components controlling e...
SummaryNaive mouse embryonic stem cells (mESCs) and primed epiblast stem cells (mEpiSCs) represent s...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
The mechanisms underlying enhancer activation and the extent to which enhancer–promoter rewiring con...
textabstractEnhancers are genetic elements that regulate spatiotemporal gene expression. Enhancer fu...
Heritable epigenetic signatures are proposed to serve as an important regulatory mechanism in lineag...
SummaryHistone modifications have been implicated in stem cell maintenance and differentiation. We h...
SummaryEnhancers are the primary determinants of cell identity, but the regulatory components contro...
International audienceGenome-wide approaches allow investigating the molecular circuitry wiring the ...
Abstract Background Epigenetic modifications, transcr...
The emergence of post-genomic approaches that couple chromatin immunoprecipitation (ChIP) assays to ...
Background Lifelong production of the many types of mature blood cells from less di...
The emerging notion of hematopoietic stem and progenitor cells (HSPCs) as a low-primed cloud without...
In the mouse, blood cells are derived from mesodermal precursors with dual angiogenic and hematopoie...
In mammals, cellular identity is defined through strict regulation of chromatin modifications and DN...
Enhancers are the primary determinants of cell identity, but the regulatory components controlling e...
SummaryNaive mouse embryonic stem cells (mESCs) and primed epiblast stem cells (mEpiSCs) represent s...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
The mechanisms underlying enhancer activation and the extent to which enhancer–promoter rewiring con...
textabstractEnhancers are genetic elements that regulate spatiotemporal gene expression. Enhancer fu...