首页> 外文期刊>Neuropharmacology >Structural differences determine the relative selectivity of nicotinic compounds for native alpha 4 beta 2*-, alpha 6 beta 2*-, alpha 3 beta 4*- and alpha 7-nicotine acetylcholine receptors.
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Structural differences determine the relative selectivity of nicotinic compounds for native alpha 4 beta 2*-, alpha 6 beta 2*-, alpha 3 beta 4*- and alpha 7-nicotine acetylcholine receptors.

机译:结构上的差异决定了烟碱类化合物对天然α4β2*-,α6β2*-,α3β4*-和α7-烟碱乙酰胆碱受体的相对选择性。

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摘要

Mammalian brain expresses multiple nicotinic acetylcholine receptor (nAChR) subtypes that differ in subunit composition, sites of expression and pharmacological and functional properties. Among known subtypes of receptors, alpha 4 beta 2* and alpha 6 beta 2*-nAChR have the highest affinity for nicotine (where * indicates possibility of other subunits). The alpha 4 beta 2*-nAChRs are widely distributed, while alpha 6 beta 2*-nAChR are restricted to a few regions. Both subtypes modulate release of dopamine from the dopaminergic neurons of the mesoaccumbens pathway thought to be essential for reward and addiction. alpha 4 beta 2*-nAChR also modulate GABA release in these areas. Identification of selective compounds would facilitate study of nAChR subtypes. An improved understanding of the role of nAChR subtypes may help in developing more effective smoking cessation aids with fewer side effects than current therapeutics. We have screened a series of nicotinic compounds that vary in the distance between the pyridine and the cationic center, in steric bulk, and in flexibility of the molecule. These compounds were screened using membrane binding and synaptosomal function assays, or recordings from GH4C1 cells expressing h alpha 7, to determine affinity, potency and efficacy at four subtypes of nAChRs found in brain, alpha 4 beta 2*, alpha 6 beta 2*, alpha 7 and alpha 3 beta 4*. In addition, physiological assays in gain-of-function mutant mice were used to assess in vivo activity at alpha 4 beta 2* and alpha 6 beta 2*-nAChRs. This approach has identified several compounds with agonist or partial agonist activity that display improved selectivity for alpha 6 beta 2*-nAChR.
机译:哺乳动物的大脑表达多种烟碱型乙酰胆碱受体(nAChR)亚型,这些亚型的亚基组成,表达位点以及药理和功能特性均不同。在受体的已知亚型中,α4 beta 2 *和α6 beta 2 * -nAChR对尼古丁的亲和力最高(其中*表示存在其他亚基的可能性)。 alpha 4 beta 2 * -nAChRs广泛分布,而alpha 6 beta 2 * -nAChR限于少数区域。两种亚型均调节中脑累积途径多巴胺能神经元的多巴胺释放,这对于奖励和成瘾至关重要。 alpha 4 beta 2 * -nAChR还在这些区域调节GABA的释放。选择性化合物的鉴定将有助于nAChR亚型的研究。与目前的治疗方法相比,对nAChR亚型作用的更好的了解可能有助于开发出更有效的戒烟助剂,且副作用更少。我们筛选了一系列烟碱化合物,这些化合物在吡啶和阳离子中心之间的距离,空间体积和分子的柔韧性方面都不同。使用膜结合和突触体功能测定或表达hα7的GH4C1细胞的记录筛选这些化合物,以确定在大脑中发现的nAChR的四种亚型,α4 beta 2 *,α6 beta 2 *的亲和力,效价和功效, alpha 7和alpha 3 beta 4 *。另外,在功能获得性突变小鼠中的生理测定用于评估在α4β2 *和α6β2 * -nAChRs的体内活性。该方法已经鉴定了几种具有激动剂或部分激动剂活性的化合物,它们对α6 beta 2 * -nAChR的选择性提高。

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