The Notch pathway controls proliferation during development and in adulthood, and is frequently affected in many disorders. However, the genetic sensitivity and multi-layered transcriptional properties of the Notch pathway has made its molecular decoding challenging. Here, we address the complexity of Notch signaling with respect to proliferation, using the developing Drosophila CNS as model. We find that a Notch/Su(H)/E(spl)-HLH cascade specifically controls daughter, but not progenitor proliferation. Additionally, we find that different E(spl)-HLH genes are required in different neuroblast lineages. The Notch/Su(H)/E(spl)-HLH cascade alters daughter proliferation by regulating four key cell cycle factors: Cyclin E, String/Cdc25, E2f and D...
Neural stem cells generate all of the neurons and glial cells in the central nervous system, both d...
Neural progenitors typically divide asymmetrically to renew themselves, while producing daughters wi...
AbstractDuring Drosophila eye development, localized Notch signaling at the dorsal ventral (DV)-midl...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The human central nervous system (CNS) displays the greatest cellular diversity of any organ system,...
Notch signalling is involved in a multitude of developmental decisions and its aberrant activation i...
AbstractA defining feature of stem cells is their capacity to renew themselves at each division whil...
AbstractThe Notch pathway plays a key role in the formation of many tissues and cell types in Metazo...
A defining feature of stem cells is their capacity to renew themselves at each division while produc...
AbstractNotch is required for many aspects of cell fate specification and morphogenesis during devel...
AbstractA defining feature of stem cells is their capacity to renew themselves at each division whil...
Neural progenitors typically divide asymmetrically to renew themselves, while producing daughters wi...
Neural stem cells generate all of the neurons and glial cells in the central nervous system, both d...
Neural progenitors typically divide asymmetrically to renew themselves, while producing daughters wi...
AbstractDuring Drosophila eye development, localized Notch signaling at the dorsal ventral (DV)-midl...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The Notch pathway controls proliferation during development and in adulthood, and is frequently affe...
The human central nervous system (CNS) displays the greatest cellular diversity of any organ system,...
Notch signalling is involved in a multitude of developmental decisions and its aberrant activation i...
AbstractA defining feature of stem cells is their capacity to renew themselves at each division whil...
AbstractThe Notch pathway plays a key role in the formation of many tissues and cell types in Metazo...
A defining feature of stem cells is their capacity to renew themselves at each division while produc...
AbstractNotch is required for many aspects of cell fate specification and morphogenesis during devel...
AbstractA defining feature of stem cells is their capacity to renew themselves at each division whil...
Neural progenitors typically divide asymmetrically to renew themselves, while producing daughters wi...
Neural stem cells generate all of the neurons and glial cells in the central nervous system, both d...
Neural progenitors typically divide asymmetrically to renew themselves, while producing daughters wi...
AbstractDuring Drosophila eye development, localized Notch signaling at the dorsal ventral (DV)-midl...