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胆囊收缩素通过胆囊收缩素A受体激活食欲素/下丘脑泌素神经元。

Cholecystokinin activates orexin/hypocretin neurons through the cholecystokinin A receptor.

作者信息

Tsujino Natsuko, Yamanaka Akihiro, Ichiki Kanako, Muraki Yo, Kilduff Thomas S, Yagami Ken-ichi, Takahashi Satoru, Goto Katsutoshi, Sakurai Takeshi

机构信息

Department of Molecular Pharmacology, Graduate School of Comprehensive Human Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8575, Japan.

出版信息

J Neurosci. 2005 Aug 10;25(32):7459-69. doi: 10.1523/JNEUROSCI.1193-05.2005.

Abstract

Orexin A and B are neuropeptides implicated in the regulation of sleep/wakefulness and energy homeostasis. The regulatory mechanism of the activity of orexin neurons is not precisely understood. Using transgenic mice in which orexin neurons specifically express yellow cameleon 2.1, we screened for factors that affect the activity of orexin neurons (a total of 21 peptides and six other factors were examined) and found that a sulfated octapeptide form of cholecystokinin (CCK-8S), neurotensin, oxytocin, and vasopressin activate orexin neurons. The mechanisms that underlie CCK-8S-induced activation of orexin neurons were studied by both calcium imaging and slice patch-clamp recording. CCK-8S induced inward current in the orexin neurons. The CCKA receptor antagonist lorglumide inhibited CCK-8S-induced activation of orexin neurons, whereas the CCKB receptor agonists CCK-4 (a tetrapeptide form of cholecystokinin) and nonsulfated CCK-8 had little effect. The CCK-8S-induced increase in intracellular calcium concentration was eliminated by removing extracellular calcium but not by an addition of thapsigargin. Nifedipine, omega-conotoxin, omega-agatoxin, 4-ethylphenylamino-1,2-dimethyl-6-methylaminopyrimidinium chloride, and SNX-482 had little effect, but La3+, Gd3+, and 2-aminoethoxydiphenylborate inhibited CCK-8S-induced calcium influx. Additionally, the CCK-8S-induced inward current was dramatically enhanced in the calcium-free solution and was inhibited by the cation channel blocker SKF96365, suggesting an involvement of extracellular calcium-sensitive cation channels. CCK-8S did not induce an increase in intracellular calcium concentration when membrane potential was clamped at -60 mV, suggesting that the calcium increase is induced by depolarization. The evidence presented here expands our understanding of the regulation of orexin neurons and the physiological role of CCK in the CNS.

摘要

食欲素A和B是参与调节睡眠/觉醒及能量平衡的神经肽。食欲素神经元活性的调节机制尚未完全明确。我们利用食欲素神经元特异性表达黄色变色龙2.1的转基因小鼠,筛选影响食欲素神经元活性的因子(共检测了21种肽和其他6种因子),发现硫酸化八肽形式的胆囊收缩素(CCK - 8S)、神经降压素、催产素和血管加压素可激活食欲素神经元。通过钙成像和脑片膜片钳记录研究了CCK - 8S诱导食欲素神经元激活的机制。CCK - 8S在食欲素神经元中诱导内向电流。CCKA受体拮抗剂洛谷胺抑制CCK - 8S诱导的食欲素神经元激活,而CCKB受体激动剂CCK - 4(胆囊收缩素的四肽形式)和非硫酸化CCK - 8作用甚微。去除细胞外钙可消除CCK - 8S诱导的细胞内钙浓度升高,而添加毒胡萝卜素则无此作用。硝苯地平、ω - 芋螺毒素、ω - 阿加毒素、4 - 乙基苯基氨基 - 1,2 - 二甲基 - 6 - 甲基氨基嘧啶氯化物和SNX - 482作用甚微,但La3 +、Gd3 +和2 - 氨基乙氧基二苯硼酸盐抑制CCK - 8S诱导的钙内流。此外,在无钙溶液中CCK - 8S诱导的内向电流显著增强,并被阳离子通道阻滞剂SKF96365抑制,提示细胞外钙敏感阳离子通道参与其中。当膜电位钳制在 - 60 mV时,CCK - 8S未诱导细胞内钙浓度升高,表明钙升高是由去极化诱导的。此处提供的证据扩展了我们对食欲素神经元调节及CCK在中枢神经系统中生理作用的理解。

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