Metazoan development involves the successive activation and silencing of specific gene expression programs and is driven by tissue-specific transcription factors programming the chromatin landscape. To understand how this process executes an entire developmental pathway, we generated global gene expression, chromatin accessibility, histone modification, and transcription factor binding data from purified embryonic stem cell-derived cells representing six sequential stages of hematopoietic specification and differentiation. Our data reveal the nature of regulatory elements driving differential gene expression and inform how transcription factor binding impacts on promoter activity. We present a dynamic core regulatory network model for hemat...
Tissue-specific gene regulation during development involves the interplay between transcription fact...
AbstractInterlinked gene regulatory networks (GRNs) are vital for the spatial and temporal control o...
Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic stem cells...
SummaryMetazoan development involves the successive activation and silencing of specific gene expres...
Metazoan development involves the successive activation and silencing of specific gene expression pr...
Metazoan development involves the successive activation and silencing of specific gene expression pr...
Metazoan development involves the successive activation and silencing of specific gene expression pr...
The initiation of cellular programs is orchestrated by key transcription factors and chromatin regul...
Gene expression is critical for the development, patterning, and homeostasis of the organism. Precis...
SummaryThough many individual transcription factors are known to regulate hematopoietic differentiat...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
Motivation: Combinatorial interactions of transcription factors with cis-regulatory elements control...
<div><p>Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic st...
AbstractThe complex spectrum of cell types produced in mammalian hematopoiesis can be understood as ...
bioRxiv preprint: https://www.biorxiv.org/content/10.1101/2020.04.02.022566v4 Contact: Grigorios Ge...
Tissue-specific gene regulation during development involves the interplay between transcription fact...
AbstractInterlinked gene regulatory networks (GRNs) are vital for the spatial and temporal control o...
Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic stem cells...
SummaryMetazoan development involves the successive activation and silencing of specific gene expres...
Metazoan development involves the successive activation and silencing of specific gene expression pr...
Metazoan development involves the successive activation and silencing of specific gene expression pr...
Metazoan development involves the successive activation and silencing of specific gene expression pr...
The initiation of cellular programs is orchestrated by key transcription factors and chromatin regul...
Gene expression is critical for the development, patterning, and homeostasis of the organism. Precis...
SummaryThough many individual transcription factors are known to regulate hematopoietic differentiat...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
Motivation: Combinatorial interactions of transcription factors with cis-regulatory elements control...
<div><p>Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic st...
AbstractThe complex spectrum of cell types produced in mammalian hematopoiesis can be understood as ...
bioRxiv preprint: https://www.biorxiv.org/content/10.1101/2020.04.02.022566v4 Contact: Grigorios Ge...
Tissue-specific gene regulation during development involves the interplay between transcription fact...
AbstractInterlinked gene regulatory networks (GRNs) are vital for the spatial and temporal control o...
Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic stem cells...