<div><p>A fundamental question in stem cell biology concerns the regulatory strategies that control the choice between multipotency and differentiation. <i>Drosophila</i> blood progenitors or prohemocytes exhibit key stem cell characteristics, including multipotency, quiescence, and niche dependence. As a result, studies of <i>Drosophila</i> hematopoiesis have provided important insights into the molecular mechanisms that control these processes. Here, we show that E-cadherin is an important regulator of prohemocyte fate choice, maintaining prohemocyte multipotency and blocking differentiation. These functions are reminiscent of the role of E-cadherin in mammalian embryonic stem cells. We also show that mis-expression of E-cadherin in diffe...
SummaryRapid progress has recently been made regarding how the niche controls stem cell function, bu...
The tight regulation of hematopoietic progenitors is required to continuously supply blood cells dur...
AbstractMembers of the RUNX and GATA transcription factor families play critical roles during hemato...
A fundamental question in stem cell biology concerns the regulatory strategies that control the choi...
A fundamental question in stem cell biology concerns the regulatory strategies that control the choi...
<div><p>Mitochondrial reactive oxygen species (ROS) regulate a variety of biological processes by ne...
Recent studies suggest that mammalian hematopoietic stem and progenitor cells (HSPCs) respond direct...
AbstractFriend of GATA proteins interact with GATA factors to regulate development in a variety of t...
AbstractThe Drosophila GATA factor Serpent interacts with the RUNX factor Lozenge to activate the cr...
As in mammals, blood cells in Drosophila are derived from a common multipotent hematopoietic precurs...
In adult mammals, blood cells are formed from hematopoietic stem progenitor cells, which are control...
AbstractDrosophila has emerged as an important model system to discover and analyze genes controllin...
Haematopoietic development provides an excellent paradigm to address how multipotentcells generate a...
Mechanistic studies of Drosophila lymph gland hematopoiesis are limited by the availability of cell-...
Abstractserpent (srp) encodes a GATA-factor that controls various aspects of embryogenesis in Drosop...
SummaryRapid progress has recently been made regarding how the niche controls stem cell function, bu...
The tight regulation of hematopoietic progenitors is required to continuously supply blood cells dur...
AbstractMembers of the RUNX and GATA transcription factor families play critical roles during hemato...
A fundamental question in stem cell biology concerns the regulatory strategies that control the choi...
A fundamental question in stem cell biology concerns the regulatory strategies that control the choi...
<div><p>Mitochondrial reactive oxygen species (ROS) regulate a variety of biological processes by ne...
Recent studies suggest that mammalian hematopoietic stem and progenitor cells (HSPCs) respond direct...
AbstractFriend of GATA proteins interact with GATA factors to regulate development in a variety of t...
AbstractThe Drosophila GATA factor Serpent interacts with the RUNX factor Lozenge to activate the cr...
As in mammals, blood cells in Drosophila are derived from a common multipotent hematopoietic precurs...
In adult mammals, blood cells are formed from hematopoietic stem progenitor cells, which are control...
AbstractDrosophila has emerged as an important model system to discover and analyze genes controllin...
Haematopoietic development provides an excellent paradigm to address how multipotentcells generate a...
Mechanistic studies of Drosophila lymph gland hematopoiesis are limited by the availability of cell-...
Abstractserpent (srp) encodes a GATA-factor that controls various aspects of embryogenesis in Drosop...
SummaryRapid progress has recently been made regarding how the niche controls stem cell function, bu...
The tight regulation of hematopoietic progenitors is required to continuously supply blood cells dur...
AbstractMembers of the RUNX and GATA transcription factor families play critical roles during hemato...