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肾上腺素能和阿片受体的反向激动作用:野生型和组成型活性突变体受体的研究

Inverse agonism at adrenergic and opioid receptors: studies with wild type and constitutively active mutant receptors.

作者信息

Milligan G, MacEwan D J, Mercouris M, Mullaney I

机构信息

Division of Biochemistry and Molecular Biology, University of Glasgow, U.K.

出版信息

Recept Channels. 1997;5(3-4):209-13.

PMID:9606725
Abstract

Ligands which display inverse agonism at G protein-coupled receptors do so by decreasing the intrinsic ability of a receptor to active the cellular G protein population in the absence of an agonist ligand. Expression of the murine delta opioid receptor in Rat-1 fibroblasts resulted in the inverse agonist ICI174864 being able to cause inhibition of basal high affinity GTPase activity and of the binding of [35S]GTP gamma S in membranes of a clone (D2) of these cells which expresses high levels of the receptor. These effects were blocked by co-addition of the neutral antagonist TIPP[psi], demonstrating a requirement for the delta opioid receptor, and by pertussis toxin pretreatment of the cells, showing them to be produced via a Gi-like G protein. The inverse agonist properties of ICI174864 could also be demonstrated in whole cells. Stimulation of forskolin-amplified adenylyl cyclase activity was produced by ICI174864 following [3H]adenine prelabelling of the cells. Constitutively activated mutants of receptors should provide a convenient means to detect inverse agonists. Incubation of cells either transiently or stably transfected with a constitutively activated mutant of the human beta 2-adrenoceptor with the beta 2-inverse agonists betaxolol or sotalol, which are both able to inhibit CAM beta 2-adrenoceptor-mediated basal adenylyl cyclase activity, resulted in a strong upregulation of levels of the receptor. In the stable cells lines this effect was prevented by co-incubation with neutral antagonists but could not be reproduced by an adenylyl cyclase P-site ligand which also inhibited basal adenylyl cyclase levels.

摘要

在G蛋白偶联受体上表现出反向激动作用的配体,是通过降低受体在没有激动剂配体时激活细胞G蛋白群体的内在能力来实现的。在大鼠-1成纤维细胞中表达小鼠δ阿片受体,使得反向激动剂ICI174864能够抑制基础高亲和力GTP酶活性以及这些细胞的一个高表达该受体的克隆(D2)膜中[35S]GTPγS的结合。这些效应可通过共同添加中性拮抗剂TIPP[ψ]来阻断,这表明需要δ阿片受体,并且通过对细胞进行百日咳毒素预处理,表明它们是通过类Gi G蛋白产生的。ICI174864的反向激动剂特性也可在全细胞中得到证实。在细胞用[3H]腺嘌呤预标记后,ICI174864可刺激福斯可林增强的腺苷酸环化酶活性。受体的组成性激活突变体应该为检测反向激动剂提供一种便捷的方法。用人类β2 -肾上腺素能受体的组成性激活突变体瞬时或稳定转染的细胞,与β2 -反向激动剂倍他洛尔或索他洛尔一起孵育,这两种药物都能够抑制CAMβ2 -肾上腺素能受体介导的基础腺苷酸环化酶活性,结果导致受体水平强烈上调。在稳定细胞系中,这种效应可通过与中性拮抗剂共同孵育来阻止,但不能被也抑制基础腺苷酸环化酶水平的腺苷酸环化酶P位点配体重现。

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