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大麻素受体的同源和异源二聚化。

Cannabinoid receptor homo- and heterodimerization.

作者信息

Mackie Ken

机构信息

Department of Anesthesiology, Box 356540, University of Washington, Seattle, WA 98195-6540, USA.

出版信息

Life Sci. 2005 Aug 19;77(14):1667-73. doi: 10.1016/j.lfs.2005.05.011.

Abstract

CB1 cannabinoid receptors mediate the psychoactive effects of Delta(9)THC and actions of the endogenous cannabinoids [Howlett, A.C., Barth, F., Bonner, T.I., Cabral, G., Casellas, P., Devane, W.A., Felder, C.C., Herkenham, M., Mackie, K., Martin, B.R., Mechoulam, R., Pertwee, R.G., 2002. International Union of Pharmacology: XXVII. Classification of cannabinoid receptors. Pharmacological Reviews 54 (2) 161-202.]. CB1 receptors belong to the G protein-coupled receptor (GPCR) superfamily. In recent years, it has become apparent that many GPCRs exist as multimers--either of like or unlike receptors [Kroeger, K.M., Pfleger, K.D., Eidne, K.A., 2003. G-protein coupled receptor oligomerization in neuroendocrine pathways. Frontiers of Neuroendocrinology 24 (4) 254-278; Milligan, G., 2004. G protein-coupled receptor dimerization: function and ligand pharmacology. Molecular Pharmacology 66 (1) 1-7.]. Importantly, GPCR multimerization plays a key role in enriching the signaling repertoire of these receptors. In this review, the evidence for CB1 multimerization will be presented, the implications for cannabinoid signaling discussed, and possible future directions for this research considered.

摘要

CB1大麻素受体介导Δ⁹-四氢大麻酚(Delta(9)THC)的精神活性作用以及内源性大麻素的作用[豪利特,A.C.,巴特,F.,邦纳,T.I.,卡布拉尔,G.,卡塞拉斯,P.,德瓦内,W.A.,费尔德,C.C.,赫肯纳姆,M.,麦基,K.,马丁,B.R.,梅丘拉姆,R.,佩特维,R.G.,2002年。国际药理学联合会:XXVII。大麻素受体的分类。《药理学评论》54(2) 161 - 202。]。CB1受体属于G蛋白偶联受体(GPCR)超家族。近年来,很明显许多GPCR以多聚体形式存在——要么是相同受体,要么是不同受体[克罗格,K.M.,普弗莱格,K.D.,艾德纳,K.A.,2003年。神经内分泌途径中的G蛋白偶联受体寡聚化。《神经内分泌前沿》24(4) 254 - 278;米利根,G.,2004年。G蛋白偶联受体二聚化:功能和配体药理学。《分子药理学》66(1) 1 - 7。]。重要的是,GPCR多聚化在丰富这些受体的信号传导功能方面起着关键作用。在本综述中,将介绍CB1多聚化的证据,讨论其对大麻素信号传导的影响,并考虑该研究未来可能的方向。

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