AbstractThe semaphorins comprise a large family of conserved glycoproteins, several members of which have been shown to function in repulsive neuronal growth cone guidance. We show here that Drosophila Semaphorin I (Sema I), a transmembrane semaphorin expressed on embryonic motor and CNS axons, is required for correct guidance of motor axons and for the formation of CNS pathways. In mutant embryos lacking Sema I, motor axons stall and fail to defasciculate at specific choice points where normally they would project to their muscle targets. In addition, a specific CNS fascicle fails to form correctly in these embryos. Rescue and ectopic expression experiments show that Sema I is required in neurons to mediate axon guidance decisions. These s...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
Motoneurons developmentally acquire appropriate cellular architectures that ensure connections with ...
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...
SummaryLongitudinal axon fascicles within the Drosophila embryonic CNS provide connections between b...
AbstractThe semaphorin gene family has been shown to play important roles in axonal guidance in both...
Background: The process of axon guidance is important in establishing functional neural circuits. Th...
Correct wiring of the mushroom body (MB) neuropil in the Drosophila brain involves appropriate posit...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
AbstractPrevious studies showed that grasshopper semaphorin I, a transmembrane semaphorin, functions...
During development, elongating axons must make important steering decisions in order to establish t...
One family of neuronal guidance cues used by growth cones to pathfind correctly is the semaphorin fa...
SummaryTransmembrane semaphorins (Semas) serve evolutionarily conserved guidance roles, and some fun...
SummaryTransmembrane semaphorins (Semas) serve evolutionarily conserved guidance roles, and some fun...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
Motoneurons developmentally acquire appropriate cellular architectures that ensure connections with ...
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...
SummaryLongitudinal axon fascicles within the Drosophila embryonic CNS provide connections between b...
AbstractThe semaphorin gene family has been shown to play important roles in axonal guidance in both...
Background: The process of axon guidance is important in establishing functional neural circuits. Th...
Correct wiring of the mushroom body (MB) neuropil in the Drosophila brain involves appropriate posit...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
AbstractPrevious studies showed that grasshopper semaphorin I, a transmembrane semaphorin, functions...
During development, elongating axons must make important steering decisions in order to establish t...
One family of neuronal guidance cues used by growth cones to pathfind correctly is the semaphorin fa...
SummaryTransmembrane semaphorins (Semas) serve evolutionarily conserved guidance roles, and some fun...
SummaryTransmembrane semaphorins (Semas) serve evolutionarily conserved guidance roles, and some fun...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
During embryogenesis, axons reach their specific targets correctly to form the complex neural networ...
Motoneurons developmentally acquire appropriate cellular architectures that ensure connections with ...