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Segregation of axial motor and sensory pathways via heterotypic trans-axonal signaling.


ABSTRACT: Execution of motor behaviors relies on circuitries effectively integrating immediate sensory feedback to efferent pathways controlling muscle activity. It remains unclear how, during neuromuscular circuit assembly, sensory and motor projections become incorporated into tightly coordinated, yet functionally separate pathways. We report that, within axial nerves, establishment of discrete afferent and efferent pathways depends on coordinate signaling between coextending sensory and motor projections. These heterotypic axon-axon interactions require motor axonal EphA3/EphA4 receptor tyrosine kinases activated by cognate sensory axonal ephrin-A ligands. Genetic elimination of trans-axonal ephrin-A --> EphA signaling in mice triggers drastic motor-sensory miswiring, culminating in functional efferents within proximal afferent pathways. Effective assembly of a key circuit underlying motor behaviors thus critically depends on trans-axonal signaling interactions resolving motor and sensory projections into discrete pathways.

SUBMITTER: Gallarda BW 

PROVIDER: S-EPMC3158657 | biostudies-literature | 2008 Apr

REPOSITORIES: biostudies-literature

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Segregation of axial motor and sensory pathways via heterotypic trans-axonal signaling.

Gallarda Benjamin W BW   Bonanomi Dario D   Müller Daniel D   Brown Arthur A   Alaynick William A WA   Andrews Shane E SE   Lemke Greg G   Pfaff Samuel L SL   Marquardt Till T  

Science (New York, N.Y.) 20080401 5873


Execution of motor behaviors relies on circuitries effectively integrating immediate sensory feedback to efferent pathways controlling muscle activity. It remains unclear how, during neuromuscular circuit assembly, sensory and motor projections become incorporated into tightly coordinated, yet functionally separate pathways. We report that, within axial nerves, establishment of discrete afferent and efferent pathways depends on coordinate signaling between coextending sensory and motor projectio  ...[more]

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