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Guide to Receptors and Channels (GRAC), 5th edition.《受体和离子通道手册》(GRAC)第 5 版。
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Ciproxifan, a histamine H₃-receptor antagonist / inverse agonist, modulates methamphetamine-induced sensitization in mice.西普西凡,一种组氨 H₃ 受体拮抗剂/反向激动剂,可调节小鼠中甲基苯丙胺诱导的敏化作用。
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3
Effects of betahistine at histamine H3 receptors: mixed inverse agonism/agonism in vitro and partial inverse agonism in vivo.倍他司汀对组胺 H3 受体的作用:体外混合反向激动/激动作用和体内部分反向激动作用。
J Pharmacol Exp Ther. 2010 Sep 1;334(3):945-54. doi: 10.1124/jpet.110.168633. Epub 2010 Jun 8.
4
Modulation of prepulse inhibition and stereotypies in rodents: no evidence for antipsychotic-like properties of histamine H3-receptor inverse agonists.调节啮齿动物的前脉冲抑制和刻板行为:没有证据表明组氨酸 H3 受体反向激动剂具有抗精神病样特性。
Psychopharmacology (Berl). 2010 Jul;210(4):591-604. doi: 10.1007/s00213-010-1863-2. Epub 2010 May 1.
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Different role of cAMP dependent protein kinase and CaMKII in H3 receptor regulation of histamine synthesis and release.环磷酸腺苷依赖的蛋白激酶和 CaMKII 在 H3 受体调控组氨酸合成和释放中的不同作用。
Neuroscience. 2009 Dec 15;164(3):1244-51. doi: 10.1016/j.neuroscience.2009.08.068. Epub 2009 Sep 6.
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Cloning and characterization of the monkey histamine H3 receptor isoforms.猴组胺H3受体亚型的克隆与鉴定
Eur J Pharmacol. 2008 Dec 28;601(1-3):8-15. doi: 10.1016/j.ejphar.2008.10.026. Epub 2008 Oct 21.
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Preclinical investigations into the antipsychotic potential of the novel histamine H3 receptor antagonist GSK207040.新型组胺H3受体拮抗剂GSK207040抗精神病潜力的临床前研究。
Psychopharmacology (Berl). 2009 Jan;201(4):483-94. doi: 10.1007/s00213-008-1310-9. Epub 2008 Sep 3.
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Histamine in the nervous system.神经系统中的组胺。
Physiol Rev. 2008 Jul;88(3):1183-241. doi: 10.1152/physrev.00043.2007.
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An inverse agonist of the histamine H(3) receptor improves wakefulness in narcolepsy: studies in orexin-/- mice and patients.组胺H(3)受体反向激动剂可改善发作性睡病患者的清醒状态:对食欲素基因敲除小鼠和患者的研究
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An 80-amino acid deletion in the third intracellular loop of a naturally occurring human histamine H3 isoform confers pharmacological differences and constitutive activity.天然存在的人类组胺H3亚型的第三个细胞内环中80个氨基酸的缺失赋予了药理学差异和组成性活性。
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组氨酸自身受体是 H₃ 受体的短亚型。

The histamine autoreceptor is a short isoform of the H₃ receptor.

机构信息

Laboratoire de Neurobiologie et Pharmacologie Moléculaire, Centre de Psychiatrie et Neurosciences (CPN, U 894), INSERM, Paris, France.

出版信息

Br J Pharmacol. 2012 Jul;166(6):1860-71. doi: 10.1111/j.1476-5381.2012.01913.x.

DOI:10.1111/j.1476-5381.2012.01913.x
PMID:22356432
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3402810/
Abstract

BACKGROUND AND PURPOSE The histamine H(3) receptor was identified as the autoreceptor of brain histaminergic neurons. After its cloning, functional H(3) receptor isoforms generated by a deletion in the third intracellular loop were found in the brain. Here, we determined if this autoreceptor was the long or the short isoform. EXPERIMENTAL APPROACH We hypothesized that the deletion would affect H(3) receptor stereoselectivity. The effects of the enantiomers of two chiral ligands, N(α)-methyl-α-chloromethylhistamine (N(α) Me-αClMeHA) and sopromidine, were investigated on cAMP formation at the H(3(445)) and H(3(413)) receptor isoforms, common to all species. They were further compared with their effects at autoreceptors. They were also compared on [(35)S]GTPγ[S] binding to membranes of rat cerebral cortex, striatum and hypothalamus, the richest area in autoreceptors. KEY RESULTS The stereoselectivity of N(α) Me-αClMeHA enantiomers as agonists was similar at the H(3(413)) receptor isoform and autoreceptors, but lower at the long isoform. While (S) sopromidine did not discriminate between the isoforms, (R) sopromidine was an antagonist at the H(3(413)) receptor isoform and autoreceptors, but a full agonist at the long isoform. In rat brain, stereoselectivity of N(α) Me-αClMeHA was higher in the hypothalamus than in cerebral cortex or striatum, whereas the opposite pattern was found for sopromidine. CONCLUSIONS AND IMPLICATIONS The pharmacological profiles of H(3) receptor isoforms differed markedly, showing that the function of autoreceptors was fulfilled by a short isoform, such as the H(3(413)) receptor. Development of drugs selectively targeting autoreceptors might enhance their therapeutic efficacy and/or decrease incidence of side effects.

摘要

背景与目的

组胺 H(3)受体被鉴定为脑内组胺能神经元的自身受体。该受体克隆后,在脑中发现了第三细胞内环缺失产生的功能性 H(3)受体同工型。在此,我们确定该自身受体是长型还是短型同工型。

实验方法

我们假设缺失会影响 H(3)受体的立体选择性。研究了两种手性配体的对映异构体,N(α)-甲基-α-氯甲基组氨酸(N(α)Me-αClMeHA)和 sopromidine,对所有物种共有的 H(3(445))和 H(3(413))受体同工型 cAMP 形成的影响。进一步将其与自身受体的作用进行比较。它们在大鼠大脑皮质、纹状体和下丘脑的膜上结合 [(35)S]GTPγ[S]的作用也进行了比较,该区域富含自身受体。

主要结果

N(α)Me-αClMeHA 对映异构体作为激动剂的立体选择性在 H(3(413))受体同工型和自身受体上相似,但在长型同工型上较低。虽然(S)sopromidine 不能区分同工型,但(R)sopromidine 是 H(3(413))受体同工型和自身受体的拮抗剂,但在长型同工型上是完全激动剂。在大鼠脑中,N(α)Me-αClMeHA 的立体选择性在丘脑比在大脑皮质或纹状体更高,而 sopromidine 的模式则相反。

结论和意义

H(3)受体同工型的药理学特征差异显著,表明自身受体的功能由短型同工型(如 H(3(413))受体)来完成。开发选择性针对自身受体的药物可能会提高其治疗效果和/或降低副作用的发生率。