Background: Transcription factors play a key role in lineage commitment and differentiation of stem cells into distinct mature cells. In hematopoiesis, they regulate lineage-specific gene expression in a stage-specific manner through various physical and functional interactions with regulatory proteins that are simultanously recruited and activated to ensure timely gene expression. The transcription factor CCAAT/enhancer binding protein alpha (C/EBP alpha) is such a factor and is essential for the development of granulocytic/monocytic cells. The activity of C/EBP alpha is regulated on several levels including gene expression, alternative translation, protein interactions and posttranslational modifications, such as phosphorylation. In parti...
The lineage-determining transcription factor CCAAT enhancer binding protein {alpha}(C/EBP{alpha}) is...
International audienceDevelopment of hematopoietic populations through the process of differentiatio...
The murine Cebpa gene contains a +37 kb, evolutionarily conserved 440 bp enhancer that directs high-...
BACKGROUND: Transcription factors play a key role in lineage commitment and differentiation of stem ...
BACKGROUND: Transcription factors play a key role in lineage commitment and differentiation of stem ...
<div><h3>Background</h3><p>Transcription factors play a key role in lineage commitment and different...
Background: Transcription factors play a key role in lineage commitment and differentiation of stem ...
Hematopoiesis is tightly controlled by transcription regulatory networks, but how and when specific ...
CCAAT/enhancer binding protein (C/EBP)alpha is a myeloid-specific transcription factor that couples ...
CCAAT/enhancer binding protein (C/EBP)alpha is a myeloid-specific transcription factor that couples ...
The CCAAT/enhancer binding protein al-pha (C/EBP) belongs to a family of tran-scription factors that...
Neutrophils, known primarily as key players in defense against invading pathogens, represent an esse...
The CEBPA gene encodes a transcription factor protein that is crucial for granulocytic differentiati...
Neutrophils, known primarily as key players in defense against invading pathogens, represent an esse...
Neutrophilic differentiation is dependent on CCAAT enhancer-binding protein a (C/EBP alpha), a trans...
The lineage-determining transcription factor CCAAT enhancer binding protein {alpha}(C/EBP{alpha}) is...
International audienceDevelopment of hematopoietic populations through the process of differentiatio...
The murine Cebpa gene contains a +37 kb, evolutionarily conserved 440 bp enhancer that directs high-...
BACKGROUND: Transcription factors play a key role in lineage commitment and differentiation of stem ...
BACKGROUND: Transcription factors play a key role in lineage commitment and differentiation of stem ...
<div><h3>Background</h3><p>Transcription factors play a key role in lineage commitment and different...
Background: Transcription factors play a key role in lineage commitment and differentiation of stem ...
Hematopoiesis is tightly controlled by transcription regulatory networks, but how and when specific ...
CCAAT/enhancer binding protein (C/EBP)alpha is a myeloid-specific transcription factor that couples ...
CCAAT/enhancer binding protein (C/EBP)alpha is a myeloid-specific transcription factor that couples ...
The CCAAT/enhancer binding protein al-pha (C/EBP) belongs to a family of tran-scription factors that...
Neutrophils, known primarily as key players in defense against invading pathogens, represent an esse...
The CEBPA gene encodes a transcription factor protein that is crucial for granulocytic differentiati...
Neutrophils, known primarily as key players in defense against invading pathogens, represent an esse...
Neutrophilic differentiation is dependent on CCAAT enhancer-binding protein a (C/EBP alpha), a trans...
The lineage-determining transcription factor CCAAT enhancer binding protein {alpha}(C/EBP{alpha}) is...
International audienceDevelopment of hematopoietic populations through the process of differentiatio...
The murine Cebpa gene contains a +37 kb, evolutionarily conserved 440 bp enhancer that directs high-...