SummaryDrosophila neuroblasts (NBs) have emerged as a model for stem cell biology that is ideal for genetic analysis but is limited by the lack of cell-type-specific gene expression data. Here, we describe a method for isolating large numbers of pure NBs and differentiating neurons that retain both cell-cycle and lineage characteristics. We determine transcriptional profiles by mRNA sequencing and identify 28 predicted NB-specific transcription factors that can be arranged in a network containing hubs for Notch signaling, growth control, and chromatin regulation. Overexpression and RNA interference for these factors identify Klumpfuss as a regulator of self-renewal. We show that loss of Klumpfuss function causes premature differentiation an...
AbstractThe Drosophila larval central brain contains about 10,000 differentiated neurons and 200 sca...
The central nervous system (CNS) is the most complex organ in the body, responsible for complex func...
Drosophila neural stem cells, larval brain neuroblasts, have recently emerged as a new model for the...
SummaryDrosophila neuroblasts (NBs) have emerged as a model for stem cell biology that is ideal for ...
Drosophila neuroblasts (NBs) have emerged as a model for stem cell biology that is ideal for genetic...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
The neural stem cells of Drosophila, called neuroblasts, have the ability to self-renew and at the s...
The neural stem cells of Drosophila, called neuroblasts, have the ability to self-renew and at the s...
Neurogenesis is initiated by a set of basic Helix-Loop-Helix (bHLH) transcription factors that speci...
AbstractThe Drosophila larval central brain contains about 10,000 differentiated neurons and 200 sca...
SummaryHow stem cells generate both differentiating and self-renewing daughter cells is unclear. Her...
SummaryIn both vertebrates and insects, neurons typically arise from neural stem cells or terminally...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
AbstractA defining feature of stem cells is their capacity to renew themselves at each division whil...
SummaryStem cells possess the capacity to generate two cells of distinct fate upon division: one cel...
AbstractThe Drosophila larval central brain contains about 10,000 differentiated neurons and 200 sca...
The central nervous system (CNS) is the most complex organ in the body, responsible for complex func...
Drosophila neural stem cells, larval brain neuroblasts, have recently emerged as a new model for the...
SummaryDrosophila neuroblasts (NBs) have emerged as a model for stem cell biology that is ideal for ...
Drosophila neuroblasts (NBs) have emerged as a model for stem cell biology that is ideal for genetic...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
The neural stem cells of Drosophila, called neuroblasts, have the ability to self-renew and at the s...
The neural stem cells of Drosophila, called neuroblasts, have the ability to self-renew and at the s...
Neurogenesis is initiated by a set of basic Helix-Loop-Helix (bHLH) transcription factors that speci...
AbstractThe Drosophila larval central brain contains about 10,000 differentiated neurons and 200 sca...
SummaryHow stem cells generate both differentiating and self-renewing daughter cells is unclear. Her...
SummaryIn both vertebrates and insects, neurons typically arise from neural stem cells or terminally...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
AbstractA defining feature of stem cells is their capacity to renew themselves at each division whil...
SummaryStem cells possess the capacity to generate two cells of distinct fate upon division: one cel...
AbstractThe Drosophila larval central brain contains about 10,000 differentiated neurons and 200 sca...
The central nervous system (CNS) is the most complex organ in the body, responsible for complex func...
Drosophila neural stem cells, larval brain neuroblasts, have recently emerged as a new model for the...