SummaryRegulatory mechanisms of human hematopoiesis remain largely uncharacterized. Through expression profiling of prospectively isolated stem and primitive progenitor cells as well as committed progenitors from cord blood (CB), we identified MLLT3 as a candidate regulator of erythroid/megakaryocytic (E/Meg) lineage decisions. Through the analysis of the hematopoietic potential of primitive cord blood cells in which MLLT3 expression has been knocked down, we identify a requirement for MLLT3 in the elaboration of the erythroid and megakaryocytic lineages. Conversely, forced expression of MLLT3 promotes the output of erythroid and megakaryocytic progenitors, and analysis of MLLT3 mutants suggests that this capacity of MLLT3 depends on its tr...
Changes in gene regulation and expression govern orderly transitions from hematopoietic stem cells t...
Changes in gene regulation and expression govern orderly transitions from hematopoietic stem cells t...
The transcription factors that control lineage specification of haematopoietic stem cells (HSCs) hav...
Molecular regulators of HSC fate decisions have been identified through involvement in leukaemia or ...
Summary: The production of blood cells and their precursors from human pluripotent stem cells (hPSCs...
Specification and differentiation of the megakaryocyte and erythroid lineages from a common bipotent...
Summary: Megakaryocytic-erythroid progenitors (MEPs) give rise to the cells that produce red blood c...
Murine gene targeting and analysis of naturally occurring human mutations have demonstrated that GAT...
Limited knowledge of the mechanisms that govern the self-renewal of human haematopoietic stem cells ...
Although it has been proposed that the common myeloid progenitor gives rise to granulocyte/monocyte ...
Megakaryocytes and erythroid cells are thought to derive from a common progeni-tor during hematopoie...
derive from a common bipotential pro-genitor and share many transcription fac-tors, most prominently...
Precise spatiotemporal control of Gata1 expression is required in both early hematopoietic progenito...
We explore cell heterogeneity during spontaneous and transcription-factor-driven commitment for netw...
International audienceErythroid commitment and differentiation are regulated by the coordinated acti...
Changes in gene regulation and expression govern orderly transitions from hematopoietic stem cells t...
Changes in gene regulation and expression govern orderly transitions from hematopoietic stem cells t...
The transcription factors that control lineage specification of haematopoietic stem cells (HSCs) hav...
Molecular regulators of HSC fate decisions have been identified through involvement in leukaemia or ...
Summary: The production of blood cells and their precursors from human pluripotent stem cells (hPSCs...
Specification and differentiation of the megakaryocyte and erythroid lineages from a common bipotent...
Summary: Megakaryocytic-erythroid progenitors (MEPs) give rise to the cells that produce red blood c...
Murine gene targeting and analysis of naturally occurring human mutations have demonstrated that GAT...
Limited knowledge of the mechanisms that govern the self-renewal of human haematopoietic stem cells ...
Although it has been proposed that the common myeloid progenitor gives rise to granulocyte/monocyte ...
Megakaryocytes and erythroid cells are thought to derive from a common progeni-tor during hematopoie...
derive from a common bipotential pro-genitor and share many transcription fac-tors, most prominently...
Precise spatiotemporal control of Gata1 expression is required in both early hematopoietic progenito...
We explore cell heterogeneity during spontaneous and transcription-factor-driven commitment for netw...
International audienceErythroid commitment and differentiation are regulated by the coordinated acti...
Changes in gene regulation and expression govern orderly transitions from hematopoietic stem cells t...
Changes in gene regulation and expression govern orderly transitions from hematopoietic stem cells t...
The transcription factors that control lineage specification of haematopoietic stem cells (HSCs) hav...