首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Pharmacological analysis of dopamine stimulation of 35S-GTP gamma S binding via human D2short and D2long dopamine receptors expressed in recombinant cells.
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Pharmacological analysis of dopamine stimulation of 35S-GTP gamma S binding via human D2short and D2long dopamine receptors expressed in recombinant cells.

机译:通过重组细胞中表达的人D2short和D2long多巴胺受体多巴胺刺激35S -GTPγS结合的多巴胺药理学分析。

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摘要

1. The activation of G-proteins by agonist-occupied D2 or D3 dopamine receptors in membranes from recombinant cells expressing the cloned receptors has been analysed by a [35S]-guanosine 5'-[gamma-thio] triphosphate ([35S]-GTP gamma S) binding assay. 2. The rate of [35S]-GTP gamma S binding was increased by dopamine in a dose-dependent manner in membranes from CHO cells stably expressing either the D2short or D2long dopamine receptor. 3. The dopamine-induced stimulation of [35S]-GTP gamma S binding could be inhibited by a range of antagonists. Affinities for antagonists derived from the inhibition of the dopamine stimulation of [35S]-GTP gamma S binding correlated very well with affinities derived from radioligand binding studies. 4. When the maximum [35S]-GTP gamma S binding responses stimulated by dopamine acting at different receptor subtypes were compared, there was a tendency for the stimulation via the D2short receptor to be greater than via the D2long receptor and for the stimulation via the D3 dopamine receptor to be less than for either D2 receptor. These differences in maximal response were also seen when the inhibitory effects of dopamine on adenylyl cyclase via the three receptor subtypes were compared. 5. The stimulation of [35S]-GTP gamma S binding by dopamine in membranes from recombinant cells therefore provides an excellent system for studying the molecular nature of agonism and the receptor/G-protein interactions for these receptors.
机译:1.已通过[35S]-鸟苷5'-[γ-硫代]三磷酸酯([35S]-)激动剂占据表达重组克隆受体的重组细胞膜中D2或D3多巴胺受体对G蛋白的激活作用。 GTPγS)结合测定。 2.在稳定表达D2short或D2long多巴胺受体的CHO细胞膜中,多巴胺以剂量依赖性方式提高[35S] -GTPγS结合的速率。 3.多巴胺诱导的[35S] -GTPγS结合刺激可被一系列拮抗剂抑制。对多巴胺刺激[35S] -GTPγS结合的抑制作用产生的拮抗剂的亲和力与对放射性配体结合的研究产生的亲和力非常相关。 4.比较由多巴胺作用于不同受体亚型的最大[35S] -GTPγS结合反应时,通过D2short受体的刺激大于通过D2long受体的刺激,并且通过D2long受体进行的刺激存在趋势。 D3多巴胺受体要小于任一D2受体。比较多巴胺通过三种受体亚型对腺苷酸环化酶的抑制作用时,也可以看到最大反应的这些差异。 5.因此,重组细胞膜中的多巴胺对[35S] -GTPγS结合的刺激为研究激动剂的分子性质以及这些受体的受体/ G蛋白相互作用提供了一个极好的系统。

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