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Peptidergic modulation of motor neuron output via CART signaling at C bouton synapses.

Panagiotis E EleftheriadisKonstantinos PothakosSimon A SharplesPanagiota E ApostolouMaria MinaEfstathia TetringaEirini TsapeGareth Brian MilesLaskaro Zagoraiou
Published in: Proceedings of the National Academy of Sciences of the United States of America (2023)
The intensity of muscle contraction, and therefore movement vigor, needs to be adaptable to enable complex motor behaviors. This can be achieved by adjusting the properties of motor neurons, which form the final common pathway for all motor output from the central nervous system. Here, we identify roles for a neuropeptide, cocaine- and amphetamine-regulated transcript (CART), in the control of movement vigor. We reveal distinct but parallel mechanisms by which CART and acetylcholine, both released at C bouton synapses on motor neurons, selectively amplify the output of subtypes of motor neurons that are recruited during intense movement. We find that mice with broad genetic deletion of CART or selective elimination of acetylcholine from C boutons exhibit deficits in behavioral tasks that require higher levels of motor output. Overall, these data uncover spinal modulatory mechanisms that control movement vigor to support movements that require a high degree of muscle force.
Keyphrases
  • spinal cord
  • skeletal muscle
  • genome wide
  • type diabetes
  • gene expression
  • adipose tissue
  • single molecule
  • machine learning
  • insulin resistance
  • artificial intelligence
  • smooth muscle
  • copy number
  • data analysis