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油酰胺对5-羟色胺7受体结合特性的变构调节。

Allosteric regulation by oleamide of the binding properties of 5-hydroxytryptamine7 receptors.

作者信息

Hedlund P B, Carson M J, Sutcliffe J G, Thomas E A

机构信息

Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Biochem Pharmacol. 1999 Dec 1;58(11):1807-13. doi: 10.1016/s0006-2952(99)00274-9.

Abstract

Oleamide belongs to a family of amidated lipids with diverse biological activities, including sleep induction and signaling modulation of several 5-hydroxytryptamine (5-HT) receptor subtypes, including 5-HT1A, 5-HT2A/2C, and 5-HT7. The 5-HT7 receptor, predominantly localized in the hypothalamus, hippocampus, and frontal cortex, stimulates cyclic AMP formation and is thought to be involved in the regulation of sleep-wake cycles. Recently, it was proposed that oleamide acts at an allosteric site on the 5-HT7 receptor to regulate cyclic AMP formation. We have further investigated the interaction between oleamide and 5-HT7 receptors by performing radioligand binding assays with HeLa cells transfected with the 5-HT7 receptor. Methiothepin, clozapine, and 5-HT all displaced specific [3H]5-HT (100 nM) binding, with pK(D) values of 7.55, 7.85, and 8.39, respectively. Oleamide also displaced [3H]5-HT binding, but the maximum inhibition was only 40% of the binding. Taking allosteric (see below) cooperativity into account, a K(D) of 2.69 nM was calculated for oleamide. In saturation binding experiments, oleamide caused a 3-fold decrease in the affinity of [3H]5-HT for the 5-HT7 receptor, without affecting the number of binding sites. A Schild analysis showed that the induced shift in affinity of [3H]5-HT reached a plateau, unlike that of a competitive inhibitor, illustrating the allosteric nature of the interaction between oleamide and the 5-HT7 receptor. Oleic acid, the product of oleamide hydrolysis, had a similar effect on [3H]5-HT binding, whereas structural analogs of oleamide, trans-9,10-octadecenamide, cis-8,9-octadecenamide, and erucamide, did not alter [3H]5-HT binding significantly. The findings support the hypothesis that oleamide acts via an allosteric site on the 5-HT7 receptor regulating receptor affinity.

摘要

油酰胺属于一类具有多种生物活性的酰胺化脂质,这些生物活性包括诱导睡眠以及对几种5-羟色胺(5-HT)受体亚型(包括5-HT1A、5-HT2A/2C和5-HT7)的信号调节。5-HT7受体主要定位于下丘脑、海马体和额叶皮质,可刺激环磷酸腺苷(cAMP)的形成,并被认为参与睡眠-觉醒周期的调节。最近,有人提出油酰胺作用于5-HT7受体的变构位点以调节cAMP的形成。我们通过对转染了5-HT7受体的HeLa细胞进行放射性配体结合试验,进一步研究了油酰胺与5-HT7受体之间的相互作用。甲硫哒嗪、氯氮平和5-HT均可取代特异性的[3H]5-HT(100 nM)结合,其解离常数(pK(D))值分别为7.55、7.85和8.39。油酰胺也能取代[3H]5-HT结合,但最大抑制率仅为结合的40%。考虑到变构协同作用,计算出油酰胺的解离常数(K(D))为2.69 nM。在饱和结合实验中,油酰胺使[3H]5-HT对5-HT7受体的亲和力降低了3倍,而不影响结合位点的数量。Schild分析表明,[3H]5-HT亲和力的诱导变化达到了平台期,这与竞争性抑制剂不同,说明了油酰胺与5-HT7受体之间相互作用的变构性质。油酰胺水解产物油酸对[3H]5-HT结合有类似作用,而油酰胺的结构类似物反式-9,10-十八碳烯酰胺、顺式-8,9-十八碳烯酰胺和芥酸酰胺对[3H]5-HT结合没有显著改变。这些发现支持了油酰胺通过5-HT7受体上的变构位点调节受体亲和力的假说。

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