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视前区EP3R神经元构成了发热和蛰伏的双向开关。

Preoptic EP3R neurons constitute a two-way switch for fever and torpor.

作者信息

Machado Natalia L S, Lynch Nicole, Costa Luis H A, Melville David, Kucukdereli Hakan, Kaur Satvinder, Banks Alexander S, Raffin Francesca, Ramirez-Plascencia Oscar D, Aten Sydney, Lima Janayna D, Bandaru Sathyajit S, Palmiter Richard D, Saper Clifford B

机构信息

Department of Neurology, Beth Israel Deaconess Medical Center and Division of Sleep Medicine and Program in Neuroscience, Harvard Medical School, Boston, MA, USA.

School of Dentistry of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil.

出版信息

Nature. 2025 May 28. doi: 10.1038/s41586-025-09056-1.

Abstract

Many species use a temporary decrease in body temperature and metabolic rate (torpor) as a strategy to survive food scarcity in a cool environment. Torpor is caused by preoptic neurons that express a variety of peptides and receptors, but no single genetic marker has been found for this population. Here we report that expression of the prostaglandin EP3 receptor (EP3R) marks a unique population of median preoptic nucleus (MnPO) neurons that are required for both torpor and lipopolysaccharide-induced fever. The MnPO-EP3R neurons produce persistent fever responses when inhibited and prolonged hypothermic responses when activated either chemogenetically or optogenetically, even for brief periods of time. The mechanism for these prolonged responses appears to involve increases in intracellular levels of cAMP and calcium that may persist for many minutes up to hours beyond the termination of a stimulus. These properties endow the population of MnPO-EP3R neurons with the ability to act as a two-way switch for the hypothermic and hyperthermic responses that are required for survival.

摘要

许多物种将体温和代谢率的暂时降低(蛰伏)作为一种策略,以在凉爽环境中应对食物短缺从而生存下来。蛰伏是由表达多种肽和受体的视前神经元引起的,但尚未找到针对该群体的单一遗传标记。在此,我们报告前列腺素EP3受体(EP3R)的表达标记了视前正中核(MnPO)中一组独特的神经元,蛰伏和脂多糖诱导的发热都需要这些神经元。MnPO-EP3R神经元在受到抑制时会产生持续的发热反应,而在通过化学遗传学或光遗传学激活时,即使是短时间激活,也会产生延长的低温反应。这些延长反应的机制似乎涉及细胞内cAMP和钙水平的升高,这些升高可能在刺激终止后持续数分钟至数小时。这些特性使MnPO-EP3R神经元群体能够作为生存所需的低温和高温反应的双向开关。

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