Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted transcriptional network orchestrated by a group of well characterized genes. However, the minimal set of factors necessary for instructing red blood cell (RBC) development remains undefined. We employed a screen for transcription factors allowing direct lineage reprograming from fibroblasts to induced erythroid progenitors/precursors (iEPs). We show that Gata1, Tal1, Lmo2, and c-Myc (GTLM) can rapidly convert murine and human fibroblasts directly to iEPs. The transcriptional signature of murine iEPs resembled mainly that of primitive erythroid progenitors in the yolk sac, whereas addition of Klf1 or Myb to the GTLM cocktail resulted in iEPs with...
SummaryPrimitive erythropoiesis follows a stereotypic developmental program of mesoderm ventralizati...
The zinc finger transcription factor GATA-1 is a major regulator of gene expression in erythroid, me...
Fetal stem cells isolated from umbilical cord blood (UCB) possess a great capacity for proliferation...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
SummaryErythroid cell commitment and differentiation proceed through activation of a lineage-restric...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
SummaryErythroid cell commitment and differentiation proceed through activation of a lineage-restric...
Summary: The production of blood cells and their precursors from human pluripotent stem cells (hPSCs...
SummaryThe lack of knowledge about the mechanism of erythrocyte biogenesis through self-replication ...
Primitive erythropoiesis follows a stereotypic developmental program of mesoderm ventralization and ...
Red blood cells (RBCs), which constitute the most abundant cell type in the body, come in two distin...
SummaryPrimitive erythropoiesis follows a stereotypic developmental program of mesoderm ventralizati...
The zinc finger transcription factor GATA-1 is a major regulator of gene expression in erythroid, me...
Fetal stem cells isolated from umbilical cord blood (UCB) possess a great capacity for proliferation...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
SummaryErythroid cell commitment and differentiation proceed through activation of a lineage-restric...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
SummaryErythroid cell commitment and differentiation proceed through activation of a lineage-restric...
Summary: The production of blood cells and their precursors from human pluripotent stem cells (hPSCs...
SummaryThe lack of knowledge about the mechanism of erythrocyte biogenesis through self-replication ...
Primitive erythropoiesis follows a stereotypic developmental program of mesoderm ventralization and ...
Red blood cells (RBCs), which constitute the most abundant cell type in the body, come in two distin...
SummaryPrimitive erythropoiesis follows a stereotypic developmental program of mesoderm ventralizati...
The zinc finger transcription factor GATA-1 is a major regulator of gene expression in erythroid, me...
Fetal stem cells isolated from umbilical cord blood (UCB) possess a great capacity for proliferation...