Prostaglandin EP3 receptor-expressing preoptic neurons bidirectionally control body temperature via tonic GABAergic signaling.

Nakamura, Yoshiko; Yahiro, Takaki; Fukushima, Akihiro; Kataoka, Naoya; Hioki, Hiroyuki; Nakamura, Kazuhiro · Sci Adv · 2022

basic_science · Level V

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Abstract

The bidirectional controller of the thermoregulatory center in the preoptic area (POA) is unknown. Using rats, here, we identify prostaglandin EP3 receptor-expressing POA neurons (POA<sup>EP3R</sup> neurons) as a pivotal bidirectional controller in the central thermoregulatory mechanism. POA<sup>EP3R</sup> neurons are activated in response to elevated ambient temperature but inhibited by prostaglandin E<sub>2</sub>, a pyrogenic mediator. Chemogenetic stimulation of POA<sup>EP3R</sup> neurons at room temperature reduces body temperature by enhancing heat dissipation, whereas inhibition of them elicits hyperthermia involving brown fat thermogenesis, mimicking fever. POA<sup>EP3R</sup> neurons innervate sympathoexcitatory neurons in the dorsomedial hypothalamus (DMH) via tonic (ceaseless) inhibitory signaling. Although many POA<sup>EP3R</sup> neuronal cell bodies express a glutamatergic messenger RNA marker, their axons in the DMH predominantly release γ-aminobutyric acid (GABA), and their GABAergic terminals are increased by chronic heat exposure. These findings demonstrate that tonic GABAergic inhibitory signaling from POA<sup>EP3R</sup> neurons is a fundamental determinant of body temperature for thermal homeostasis and fever.

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