Previously, we have shown that overexpression of an activated mutant of signal transducer and activator of transcription-5 (STAT5) induces erythropoiesis, impaired myelopoiesis, and an increase in long-term proliferation of human hematopoietic stem/progenitor cells. Because GATA1 is a key transcription factor involved in erythropoiesis, the involvement of GATA1 in STAT5-induced phenotypes was studied by shRNA-mediated knockdown of GATA1. CD34(+) cord blood cells were double transduced with a conditionally active STAT5 mutant and a lentiviral vector expressing a short hairpin against GATA1. Erythropoiesis was completely abolished in the absence of GATA1, indicating that STAT5-induced erythropoiesis is GATA1-dependent. Furthermore, the impair...
The transcription factor Gata1 is expressed in several hematopoietic lineages and plays essential ro...
Germline GATA1 mutations that result in the production of an amino-truncated protein termed GATA1s (...
The level of transcription factor activity critically regulates cell fate decisions, such as hematop...
Previously, we have shown that overexpression of an activated mutant of signal transducer and activa...
Previously, we have shown that overexpres-sion of an activated mutant of signal trans-ducer and acti...
Murine gene targeting and analysis of naturally occurring human mutations have demonstrated that GAT...
Although it has been proposed that the common myeloid progenitor gives rise to granulocyte/monocyte ...
etic transcription factors that control erythromegakaryocytic and myelolym-phoid differentiation, re...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
Erythroid commitment and differentiation are regulated by the coordinated action of a host of transc...
The zinc finger transcription factor GATA-1 is a major regulator of gene expression in erythroid, me...
The intense physiologic demand to generate vast numbers of red blood cells requires the establishmen...
for erythropoiesis, yet its full actions are unknown. We performed transcriptome analysis of G1E-ER4...
<div><p>Hematopoietic stem cells can self-renew and differentiate into all blood cell types. The tra...
The transcription factor Gata1 is expressed in several hematopoietic lineages and plays essential ro...
Germline GATA1 mutations that result in the production of an amino-truncated protein termed GATA1s (...
The level of transcription factor activity critically regulates cell fate decisions, such as hematop...
Previously, we have shown that overexpression of an activated mutant of signal transducer and activa...
Previously, we have shown that overexpres-sion of an activated mutant of signal trans-ducer and acti...
Murine gene targeting and analysis of naturally occurring human mutations have demonstrated that GAT...
Although it has been proposed that the common myeloid progenitor gives rise to granulocyte/monocyte ...
etic transcription factors that control erythromegakaryocytic and myelolym-phoid differentiation, re...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
The megakaryocyte/erythroid Transient Myeloproliferative Disorder (TMD) in newborns with Down Syndro...
Erythroid commitment and differentiation are regulated by the coordinated action of a host of transc...
The zinc finger transcription factor GATA-1 is a major regulator of gene expression in erythroid, me...
The intense physiologic demand to generate vast numbers of red blood cells requires the establishmen...
for erythropoiesis, yet its full actions are unknown. We performed transcriptome analysis of G1E-ER4...
<div><p>Hematopoietic stem cells can self-renew and differentiate into all blood cell types. The tra...
The transcription factor Gata1 is expressed in several hematopoietic lineages and plays essential ro...
Germline GATA1 mutations that result in the production of an amino-truncated protein termed GATA1s (...
The level of transcription factor activity critically regulates cell fate decisions, such as hematop...