Ultradian rhythms of CRH <sup>PVN</sup> neuron activity, behavior, and stress hormone secretion
Abstract
The stress axis is always active, even in the absence of any threat. This manifests as hourly pulses of corticosteroid stress hormone secretion over the day. Corticotropin-releasing hormone (CRH) neurons in the paraventricular nucleus of the hypothalamus (CRH PVN ) control both the neuroendocrine stress axis as well as stress-associated behaviors. However, it is currently unclear how the resting activity of these neurons is coordinated with both spontaneous behavior and ultradian pulses of corticosteroid secretion. To investigate this, we performed fiber photometry recordings of CRH PVN neuron activity in Crh-Ires-Cre mice and a newly generated line of Crh-Ires-Cre rats. In both mice and rats, CRH PVN neurons displayed an ultradian rhythm of activity with reoccurring upstates of activity approximately once per hour over the 24-h day. Upstates in activity were coordinated with increases in animal activity/arousal. Chemogenetic activation of CRH PVN neurons was also sufficient to induce behavioral arousal. In rats, increases in CRH neural activity preceded some pulses of corticosteroid secretion but not others. Thus, while CRH PVN neurons display an ultradian rhythm of activity over the 24-h day that is coordinated with behavioral arousal, the relationship between CRH PVN activity and pulses of corticosteroid secretion is not one-to-one.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (10)
Shaojie Zheng
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Caroline M. B. Focke
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Calvin K. Young
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Isaac Tripp
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Dharshini Ganeshan
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Emmet M. Power
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Daryl O. Schwenke
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Allan E. Herbison
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Joon S. Kim
Centre for Neuroendocrinology and Department of Physiology, University of Otago
Karl J. Iremonger
Centre for Neuroendocrinology and Department of Physiology, University of Otago