In addition to orchestrating the expression of all erythroid-specific genes, GATA-1 controls the growth, differentiation, and survival of the erythroid lineage through the regulation of genes that manipulate the cell cycle and apoptosis. The stages of mammalian erythropoiesis include global gene inactivation, nuclear condensation, and enucleation to yield circulating erythrocytes, and some of the genes whose expression are altered by GATA-1 during this process are members of the p53 pathway. In this study, we demonstrate a specific in vitro interaction between the transactivation domain of p53 (p53TAD) and a segment of the GATA-1 DNA-binding domain that includes the carboxyl-terminal zinc-finger domain.We also show by immunoprecipitation th...
Precise spatiotemporal control of Gata1 expression is required in both early hematopoietic progenito...
<div><p>We previously reported that IL-3 signaling induces phosphorylation of GATA-1 at the serine<s...
SummaryGATA-1-dependent transcription is essential for erythroid differentiation and maturation. Sup...
GATA-1, a transcription factor essential for the development of the erythroid lineage, contains two ...
GATA-1 is essential for the generation of the erythroid, megakaryocytic, eosinophilic and mast cell ...
GATA-1 is essential for the generation of the erythroid, megakaryocytic, eosinophilic and mast cell ...
The zinc finger transcription factor GATA-1 is a major regulator of gene expression in erythroid, me...
textabstractGATA-1 is essential for the generation of the erythroid, megakaryocytic, eosinophilic an...
Erythroid commitment and differentiation are regulated by the coordinated action of a host of transc...
Post-translational modifications such as acetylation and phosphorylation play key roles in controlli...
Post-translational modifications such as acetylation and phosphorylation play key roles in controlli...
We previously reported that IL-3 signaling induces phosphorylation of GATA-1 at the serine²⁶ positio...
AbstractTranscription factors of the GATA-family are essential for proper development of diverse tis...
International audienceErythroid commitment and differentiation are regulated by the coordinated acti...
GATA-1 is a tissue-specific transcription factor that is essential for the production of red blood c...
Precise spatiotemporal control of Gata1 expression is required in both early hematopoietic progenito...
<div><p>We previously reported that IL-3 signaling induces phosphorylation of GATA-1 at the serine<s...
SummaryGATA-1-dependent transcription is essential for erythroid differentiation and maturation. Sup...
GATA-1, a transcription factor essential for the development of the erythroid lineage, contains two ...
GATA-1 is essential for the generation of the erythroid, megakaryocytic, eosinophilic and mast cell ...
GATA-1 is essential for the generation of the erythroid, megakaryocytic, eosinophilic and mast cell ...
The zinc finger transcription factor GATA-1 is a major regulator of gene expression in erythroid, me...
textabstractGATA-1 is essential for the generation of the erythroid, megakaryocytic, eosinophilic an...
Erythroid commitment and differentiation are regulated by the coordinated action of a host of transc...
Post-translational modifications such as acetylation and phosphorylation play key roles in controlli...
Post-translational modifications such as acetylation and phosphorylation play key roles in controlli...
We previously reported that IL-3 signaling induces phosphorylation of GATA-1 at the serine²⁶ positio...
AbstractTranscription factors of the GATA-family are essential for proper development of diverse tis...
International audienceErythroid commitment and differentiation are regulated by the coordinated acti...
GATA-1 is a tissue-specific transcription factor that is essential for the production of red blood c...
Precise spatiotemporal control of Gata1 expression is required in both early hematopoietic progenito...
<div><p>We previously reported that IL-3 signaling induces phosphorylation of GATA-1 at the serine<s...
SummaryGATA-1-dependent transcription is essential for erythroid differentiation and maturation. Sup...