SummaryCell proliferation in animals must be precisely controlled, but the signaling mechanisms that regulate the cell cycle are not well characterized. A regulated terminal mitosis, called the second mitotic wave (SMW), occurs during Drosophila eye development, providing a model for the genetic analysis of proliferation control. We report a cell cycle checkpoint at the G1-S transition that initiates the SMW, and we demonstrate that Notch signaling is required for cells to overcome this checkpoint. Notch triggers the onset of proliferation by multiple pathways, including the activation of dE2F1, a member of the E2F transcription factor family. Delta to Notch signaling derepresses the inhibition of dE2F1 by RBF, and Delta expression depends ...
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...
Background: Most differentiating cells are arrested in G1-phase of the cell cycle and this prolifer...
SummaryCell proliferation in animals must be precisely controlled, but the signaling mechanisms that...
Cell proliferation in animals must be precisely controlled, but the signaling mechanisms that regula...
The signals that coordinate cellular proliferation with G1 arrest and differentiation have long been...
AbstractDuring Drosophila eye development, localized Notch signaling at the dorsal ventral (DV)-midl...
The Notch signalling pathway is evolutionary conserved and participates in numerous developmental pr...
Background: The follicle cells of the Drosophila egg chamber provide an excellent model in which to ...
AbstractDuring Drosophila eye development, localized Notch signaling at the dorsal ventral (DV)-midl...
The signals that coordinate cellular proliferation with G1 arrest and differentiation have long been...
AbstractDuring Drosophila oogenesis, Notch function regulates the transition from mitotic cell cycle...
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...
AbstractBackground: Intercellular signals are major determinants of cell fate during development. Ce...
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...
Background: Most differentiating cells are arrested in G1-phase of the cell cycle and this prolifer...
SummaryCell proliferation in animals must be precisely controlled, but the signaling mechanisms that...
Cell proliferation in animals must be precisely controlled, but the signaling mechanisms that regula...
The signals that coordinate cellular proliferation with G1 arrest and differentiation have long been...
AbstractDuring Drosophila eye development, localized Notch signaling at the dorsal ventral (DV)-midl...
The Notch signalling pathway is evolutionary conserved and participates in numerous developmental pr...
Background: The follicle cells of the Drosophila egg chamber provide an excellent model in which to ...
AbstractDuring Drosophila eye development, localized Notch signaling at the dorsal ventral (DV)-midl...
The signals that coordinate cellular proliferation with G1 arrest and differentiation have long been...
AbstractDuring Drosophila oogenesis, Notch function regulates the transition from mitotic cell cycle...
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...
AbstractBackground: Intercellular signals are major determinants of cell fate during development. Ce...
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...
Background: Most differentiating cells are arrested in G1-phase of the cell cycle and this prolifer...