The DNA-binding hemopoietic zinc finger transcription factor GATA1 promotes terminal megakaryocyte differentiation and restrains abnormal immature megakaryocyte expansion. How GATA1 coordinates these fundamental processes is unclear. Previous studies of synthetic and naturally occurring mutant GATA1 molecules demonstrate that DNA-binding and interaction with the essential GATA1 cofactor FOG-1 (via the N-terminal finger) are required for gene expression in terminally differentiating megakaryocytes and for platelet production. Moreover, acquired mutations deleting the N-terminal 84 amino acids are specifically detected in megakaryocytic leukemia in human Down syndrome patients. In this study, we have systematically dissected GATA1 domains req...
BACKGROUND: Acute megakaryocytic leukemia (AMkL) in Down syndrome (DS) children is uniformly associa...
Specification and differentiation of the megakaryocyte and erythroid lineages from a common bipotent...
Acquired somatic mutations in exon 2 of the hematopoietic transcription factor GATA-1 have been foun...
The DNA-binding hemopoietic zinc finger transcription factor GATA1 promotes terminal megakaryocyte d...
Murine gene targeting and analysis of naturally occurring human mutations have demonstrated that GAT...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
GATA-2 is an essential transcription factor that regulates multiple aspects of hematopoiesis. Dysreg...
During hematopoiesis, transcriptional programs are essential for the commitment and differentiation ...
We describe a child with dyserythropoietic anemia, thrombocytosis, functional platelet defect, and m...
During hematopoiesis, transcriptional programs are essential for the commitment and differentiation ...
Each mammalian cell type has a unique gene expression pattern that supports its specialized function...
During hematopoiesis, transcriptional programs are essential for the commitment and differentiation ...
GATA-1 is the founding member of a transcription factor family that regulates growth and maturation ...
Children with Down syndrome (DS) are susceptible to two blood disorders, transient abnormal myelopoi...
BACKGROUND: Acute megakaryocytic leukemia (AMkL) in Down syndrome (DS) children is uniformly associa...
Specification and differentiation of the megakaryocyte and erythroid lineages from a common bipotent...
Acquired somatic mutations in exon 2 of the hematopoietic transcription factor GATA-1 have been foun...
The DNA-binding hemopoietic zinc finger transcription factor GATA1 promotes terminal megakaryocyte d...
Murine gene targeting and analysis of naturally occurring human mutations have demonstrated that GAT...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
GATA-2 is an essential transcription factor that regulates multiple aspects of hematopoiesis. Dysreg...
During hematopoiesis, transcriptional programs are essential for the commitment and differentiation ...
We describe a child with dyserythropoietic anemia, thrombocytosis, functional platelet defect, and m...
During hematopoiesis, transcriptional programs are essential for the commitment and differentiation ...
Each mammalian cell type has a unique gene expression pattern that supports its specialized function...
During hematopoiesis, transcriptional programs are essential for the commitment and differentiation ...
GATA-1 is the founding member of a transcription factor family that regulates growth and maturation ...
Children with Down syndrome (DS) are susceptible to two blood disorders, transient abnormal myelopoi...
BACKGROUND: Acute megakaryocytic leukemia (AMkL) in Down syndrome (DS) children is uniformly associa...
Specification and differentiation of the megakaryocyte and erythroid lineages from a common bipotent...
Acquired somatic mutations in exon 2 of the hematopoietic transcription factor GATA-1 have been foun...