Abstract
Prolactin (PRL) activates PRL receptor isoforms to exert regulation of specific neuronal circuitries, and to control numerous physiological and clinically-relevant functions including; maternal behavior, energy balance and food intake, stress and trauma responses, anxiety, neurogenesis, migraine and pain. PRL controls these critical functions by regulating receptor potential thresholds, neuronal excitability and/or neurotransmission efficiency. PR L also influences neuronal functions via activation of certain neurons, resulting in Ca2+ influx and/or electrical firing with subsequent release of neurotransmitters. Although PRL was identified almost a century ago, very little specific information is known about how PRL regulates neuronal functions. Nevertheless, important initial steps have recently been made including the identification of PRL-induced transient signaling pathways in neurons and the modulation of neuronal transient receptor potential (TR P) and Ca2+ -dependent K+ channels by PRL. In this review, we summarize current knowledge and recent progress in understanding the regulation of neuronal excitability and channels by PRL. © 2014 Landes Bioscience.
Author supplied keywords
Cite
CITATION STYLE
Patil, M. J., Henry, M. A., & Akopian, A. N. (2014). Prolactin receptor in regulation of neuronal excitability and channels. Channels. Landes Bioscience. https://doi.org/10.4161/chan.28946
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.