SummaryDrosophila sensory organ precursor (SOP) cells are a well-studied model system for asymmetric cell division. During SOP division, the determinants Numb and Neuralized segregate into the pIIb daughter cell and establish a distinct cell fate by regulating Notch/Delta signaling. Here, we describe a Numb- and Neuralized-independent mechanism that acts redundantly in cell-fate specification. We show that trafficking of the Notch ligand Delta is different in the two daughter cells. In pIIb, Delta passes through the recycling endosome which is marked by Rab11. In pIIa, however, the recycling endosome does not form because the centrosome fails to recruit Nuclear fallout, a Rab11 binding partner that is essential for recycling endosome format...
Cell fate decision during asymmetric division is mediated by the biased partition of cell fate deter...
Notch signaling regulates fate specification in lineages among Metazoans. Although its functional re...
SummaryAsymmetric distribution of fate determinants is a fundamental mechanism underlying the acquis...
SummaryDrosophila sensory organ precursor (SOP) cells are a well-studied model system for asymmetric...
SummaryAsymmetric division of sensory organ precursors (SOPs) in Drosophila generates different cell...
AbstractDuring development of the Drosophila peripheral nervous system, a sensory organ precursor (S...
AbstractIn Drosophila, Notch signaling regulates binary fate decisions at each asymmetric division i...
SummaryCell fate decision during asymmetric division is mediated by the biased partition of cell fat...
SummaryNumb acts as a cell-fate determinant during asymmetric and stem cell divisions in both verteb...
International audienceNotch receptors mediate short-range signaling controlling many developmental d...
SummaryIn Drosophila melanogaster, external sensory organs develop from a single sensory organ precu...
SummaryDuring asymmetric cell division, the Notch regulator Numb segregates unequally to establish d...
AbstractBackground: Embryonic cleavage leads to the formation of an epithelial layer during developm...
SummaryThe internalization of transmembrane receptors from the cell surface plays a central role in ...
International audienceCell fate decision during asymmetric division is mediated by the biased partit...
Cell fate decision during asymmetric division is mediated by the biased partition of cell fate deter...
Notch signaling regulates fate specification in lineages among Metazoans. Although its functional re...
SummaryAsymmetric distribution of fate determinants is a fundamental mechanism underlying the acquis...
SummaryDrosophila sensory organ precursor (SOP) cells are a well-studied model system for asymmetric...
SummaryAsymmetric division of sensory organ precursors (SOPs) in Drosophila generates different cell...
AbstractDuring development of the Drosophila peripheral nervous system, a sensory organ precursor (S...
AbstractIn Drosophila, Notch signaling regulates binary fate decisions at each asymmetric division i...
SummaryCell fate decision during asymmetric division is mediated by the biased partition of cell fat...
SummaryNumb acts as a cell-fate determinant during asymmetric and stem cell divisions in both verteb...
International audienceNotch receptors mediate short-range signaling controlling many developmental d...
SummaryIn Drosophila melanogaster, external sensory organs develop from a single sensory organ precu...
SummaryDuring asymmetric cell division, the Notch regulator Numb segregates unequally to establish d...
AbstractBackground: Embryonic cleavage leads to the formation of an epithelial layer during developm...
SummaryThe internalization of transmembrane receptors from the cell surface plays a central role in ...
International audienceCell fate decision during asymmetric division is mediated by the biased partit...
Cell fate decision during asymmetric division is mediated by the biased partition of cell fate deter...
Notch signaling regulates fate specification in lineages among Metazoans. Although its functional re...
SummaryAsymmetric distribution of fate determinants is a fundamental mechanism underlying the acquis...