Control of hypothalamic orexin neurons by acid and CO2

被引:233
作者
Williams, Rhiannan H.
Jensen, Lise T.
Verkhratsky, Alex
Fugger, Lars
Burdakov, Denis
机构
[1] Univ Cambridge, Dept Pharmacol, Cambridge CB2 1PD, England
[2] Univ Manchester, Fac Life Sci, Manchester M13 9PT, Lancs, England
[3] Aarhus Univ Hosp, Dept Clin Immunol, DK-8200 Aarhus, Denmark
[4] Acad Sci Czech Republ, Inst Expt Med, Prague 14220, Czech Republic
[5] Univ Oxford, Weatherall Inst Mol Med, Med Res Council Human Immunol Unit, Oxford OX3 9DS, England
[6] Univ Oxford, Weatherall Inst Mol Med, Dept Clin Neurol, Oxford OX3 9DS, England
基金
英国医学研究理事会;
关键词
arousal; hypocretin; hypothalamus; pH; breathing;
D O I
10.1073/pnas.0702676104
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Hypothalamic orexin/hypocretin neurons recently emerged as key orchestrators of brain states and adaptive behaviors. They are critical for normal stimulation of wakefulness and breathing: Orexin loss causes narcolepsy and compromises vital ventilatory adaptations. However, it is unclear how orexin neurons generate appropriate adjustments in their activity during changes in physiological circumstances. Extracellular levels of acid and CO2 are fundamental physicochemical signals controlling wakefulness and breathing, but their effects on the firing of orexin neurons are unknown. Here we show that the spontaneous firing rate of identified orexin neurons is profoundly affected by physiological fluctuations in ambient levels of H+ and CO2. These responses resemble those of known chemosensory neurons both qualitatively (acidification is excitatory, alkalinization is inhibitory) and quantitatively (approximate to 100% change in firing rate per 0.1 unit change in pH(e)). Evoked firing of orexin cells is similarly modified by physiologically relevant changes in pH(e): Acidification increases intrinsic excitability, whereas alkalinization depresses it. The effects of pH(e) involve acid-induced closure of leak-like K+ channels in the orexin cell membrane. These results suggest a new mechanism of how orexin/hypocretin networks generate homeostatically appropriate firing patterns.
引用
收藏
页码:10685 / 10690
页数:6
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