Motoneurons regulate the central pattern generator during drug-induced locomotor-like activity in the neonatal mouse.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28671548.
- Also identified by DOI 10.7554/eLife.26622 and PMC identifier 5550280.
- Licence recorded as CC0.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Motoneurons are traditionally viewed as the output of the spinal cord that do not influence locomotor rhythmogenesis. We assessed the role of motoneuron firing during ongoing locomotor-like activity in neonatal mice expressing archaerhopsin-3 (Arch), halorhodopsin (eNpHR), or channelrhodopsin-2 (ChR2) in Choline acetyltransferase neurons (ChAT<sup>+</sup>) or Arch in LIM-homeodomain transcription factor <i>Isl1</i><sup>+</sup> neurons. Illumination of the lumbar cord in mice expressing eNpHR or Arch in ChAT<sup>+</sup> or <i>Isl1</i><sup>+</sup> neurons, depressed motoneuron discharge, transiently decreased the frequency, and perturbed the phasing of the locomotor-like rhythm. When the light was turned off motoneuron firing and locomotor frequency both transiently increased. These effects were not due to cholinergic neurotransmission, persisted during partial blockade of gap junctions and were mediated, in part, by AMPAergic transmission. In spinal cords expressing ChR2, illumination increased motoneuron discharge and transiently accelerated the rhythm. We conclude that motoneurons provide feedback to the central pattern generator (CPG) during drug-induced locomotor-like activity.
Medical subject headings
- Central Pattern Generators
- Locomotion
- Motor Neurons