Role of spontaneous and sensory orexin network dynamics in rapid locomotion initiation

Prog Neurobiol. 2020 Apr:187:101771. doi: 10.1016/j.pneurobio.2020.101771. Epub 2020 Feb 11.

Abstract

Appropriate motor control is critical for normal life, and requires hypothalamic hypocretin/orexin neurons (HONs). HONs are slowly regulated by nutrients, but also display rapid (subsecond) activity fluctuations in vivo. The necessity of these activity bursts for sensorimotor control and their roles in specific phases of movement are unknown. Here we show that temporally-restricted optosilencing of spontaneous or sensory-evoked HON bursts disrupts locomotion initiation, but does not affect ongoing locomotion. Conversely, HON optostimulation initiates locomotion with subsecond delays in a frequency-dependent manner. Using 2-photon volumetric imaging of activity of >300 HONs during sensory stimulation and self-initiated locomotion, we identify several locomotion-related HON subtypes, which distinctly predict the probability of imminent locomotion initiation, display distinct sensory responses, and are differentially modulated by food deprivation. By causally linking HON bursts to locomotion initiation, these findings reveal the sensorimotor importance of rapid spontaneous and evoked fluctuations in HON ensemble activity.

Keywords: Ensemble imaging; Hypothalamus; Locomotion; Sensorimotor processing; orexin/hypocretin neurons.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Female
  • Hypothalamus / physiology*
  • Locomotion / physiology*
  • Male
  • Mice
  • Mice, Inbred C57BL
  • Neurons / physiology*
  • Orexins / metabolism

Substances

  • Orexins