AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the morphogenesis of dendritic arborization (da) neurons of the Drosophila larval peripheral nervous system. In contrast, Nos and Pum function in opposition to one another in the neuromuscular junction to regulate the morphogenesis and the electrophysiological properties of synaptic boutons. Neither the cellular functions of Nos and Pum nor their regulatory targets in neuronal morphogenesis are known. Here we show that Nos and Pum are required to maintain the dendritic complexity of da neurons during larval growth by promoting the outgrowth of new dendritic branches and the stabilization of existing dendritic branches, in part by regulating the expr...
<div><p>Background</p><p>Neurons are one of the most structurally and functionally diverse cell type...
SummaryThe transcription factors Abrupt (Ab) and Knot (Kn) act as selectors of distinct dendritic ar...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
AbstractMuch attention has focused on dendritic translational regulation of neuronal signaling and p...
AbstractMuch attention has focused on dendritic translational regulation of neuronal signaling and p...
AbstractTranslational repression by Drosophila Pumilio (Pum) protein controls posterior patterning d...
SummarySpatial control of mRNA translation can generate cellular asymmetries and functional speciali...
AbstractHow dendrites of different neuronal subtypes exhibit distinct branching patterns during deve...
AbstractMorphological complexity of neurons contributes to their functional complexity. How neurons ...
AbstractTo study the roles of intracellular factors in neuronal morphogenesis, we used the mosaic an...
AbstractThe establishment, maintenance and modulation of cell-type specific neural architectures are...
Dendrite arborization patterns are critical determinants of neuronal function. To explore the basis ...
Nervous systems assemble with remarkable organization and precision. Developmental mechanisms ensure...
Background: Neurons are one of the most structurally and functionally diverse cell types found in na...
<div><p>Background</p><p>Neurons are one of the most structurally and functionally diverse cell type...
SummaryThe transcription factors Abrupt (Ab) and Knot (Kn) act as selectors of distinct dendritic ar...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
AbstractMuch attention has focused on dendritic translational regulation of neuronal signaling and p...
AbstractMuch attention has focused on dendritic translational regulation of neuronal signaling and p...
AbstractTranslational repression by Drosophila Pumilio (Pum) protein controls posterior patterning d...
SummarySpatial control of mRNA translation can generate cellular asymmetries and functional speciali...
AbstractHow dendrites of different neuronal subtypes exhibit distinct branching patterns during deve...
AbstractMorphological complexity of neurons contributes to their functional complexity. How neurons ...
AbstractTo study the roles of intracellular factors in neuronal morphogenesis, we used the mosaic an...
AbstractThe establishment, maintenance and modulation of cell-type specific neural architectures are...
Dendrite arborization patterns are critical determinants of neuronal function. To explore the basis ...
Nervous systems assemble with remarkable organization and precision. Developmental mechanisms ensure...
Background: Neurons are one of the most structurally and functionally diverse cell types found in na...
<div><p>Background</p><p>Neurons are one of the most structurally and functionally diverse cell type...
SummaryThe transcription factors Abrupt (Ab) and Knot (Kn) act as selectors of distinct dendritic ar...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...