Motoneurons developmentally acquire appropriate cellular architectures that ensure connections with postsynaptic muscles and presynaptic neurons. In Drosophila, leg motoneurons are organized as a myotopic map, where their dendritic domains represent the muscle field. Here we investigate mechanisms underlying development of aspects of this myotopic map, required for walking. A behavioral screen identified roles for Semaphorins (Sema) and Plexins (Plex) in walking behavior. Deciphering this phenotype, we show that PlexA/Sema1a mediates motoneuron axon branching in ways that differ in the proximal femur and distal tibia, based on motoneuronal birth order. Importantly, we show a novel role for glia in positioning dendrites of specific motoneuro...
Precise patterning of dendritic arbors is critical for the wiring and function of neural circuits. D...
Precise patterning of dendritic arbors is critical for the wiring and function of neural circuits. D...
Homeostatic signalling systems ensure stable but flexible neural activity and animal behaviour. Pres...
SummaryLongitudinal axon fascicles within the Drosophila embryonic CNS provide connections between b...
Correct wiring of the mushroom body (MB) neuropil in the Drosophila brain involves appropriate posit...
During the development of neural circuitry, neurons of different kinds establish specific synaptic c...
AbstractThe semaphorins comprise a large family of conserved glycoproteins, several members of which...
AbstractThe semaphorin gene family has been shown to play important roles in axonal guidance in both...
Homeostatic signalling systems ensure stable but flexible neural activity and animal behaviour. Pres...
Neural maps are emergent, highly ordered structures that are essential for organizing and presenting...
The Semaphorins comprise a large family of secreted and transmembrane proteins, some of which functi...
The Semaphorins comprise a large family of secreted and transmembrane proteins, some of which functi...
The Semaphorins comprise a large family of secreted and transmembrane proteins, some of which functi...
AbstractThe semaphorins comprise a large family of conserved glycoproteins, several members of which...
Neural maps are emergent, highly ordered structures that are essential for organizing and presenting...
Precise patterning of dendritic arbors is critical for the wiring and function of neural circuits. D...
Precise patterning of dendritic arbors is critical for the wiring and function of neural circuits. D...
Homeostatic signalling systems ensure stable but flexible neural activity and animal behaviour. Pres...
SummaryLongitudinal axon fascicles within the Drosophila embryonic CNS provide connections between b...
Correct wiring of the mushroom body (MB) neuropil in the Drosophila brain involves appropriate posit...
During the development of neural circuitry, neurons of different kinds establish specific synaptic c...
AbstractThe semaphorins comprise a large family of conserved glycoproteins, several members of which...
AbstractThe semaphorin gene family has been shown to play important roles in axonal guidance in both...
Homeostatic signalling systems ensure stable but flexible neural activity and animal behaviour. Pres...
Neural maps are emergent, highly ordered structures that are essential for organizing and presenting...
The Semaphorins comprise a large family of secreted and transmembrane proteins, some of which functi...
The Semaphorins comprise a large family of secreted and transmembrane proteins, some of which functi...
The Semaphorins comprise a large family of secreted and transmembrane proteins, some of which functi...
AbstractThe semaphorins comprise a large family of conserved glycoproteins, several members of which...
Neural maps are emergent, highly ordered structures that are essential for organizing and presenting...
Precise patterning of dendritic arbors is critical for the wiring and function of neural circuits. D...
Precise patterning of dendritic arbors is critical for the wiring and function of neural circuits. D...
Homeostatic signalling systems ensure stable but flexible neural activity and animal behaviour. Pres...