首页> 美国卫生研究院文献>The Journal of Neuroscience >Localization of phencyclidine binding sites on alpha and beta subunits of the nicotinic acetylcholine receptor from Torpedo ocellata electric organ using azido phencyclidine
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Localization of phencyclidine binding sites on alpha and beta subunits of the nicotinic acetylcholine receptor from Torpedo ocellata electric organ using azido phencyclidine

机译:使用叠氮基苯环啶从鱼雷电器官的烟碱乙酰胆碱受体的α和β亚基上苯环利定结合位点的定位

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摘要

A photolabile derivative of phencycliding (PCP), azido phencyclidine (AZ-PCP), was synthesized and used to localize PCP binding sites on the acetylcholine receptor from Torpedo ocellata electric organ. In the dark, the binding of micromolar concentrations of [3H]AZ-PCP to a receptor-enriched membrane preparation fits a single dissociation constant (Kd = 2.65 microM) and is very similar to the binding of [3H]PCP. The agonist carbamylcholine increases the association rate (and the affinity) of these ligands to the receptor, but it does not alter the total number of available binding sites. Following UV irradiation and gel electrophoresis, [3H]AZ-PCP was found to label specifically the alpha and beta subunits of the receptor. The labeling of the alpha subunit band was heavier, and it was inhibited by tetracaine and PCP but not by alpha-bungarotoxin (alpha-Bgt). The addition of carbamylcholine enhanced the labeling of the beta subunit; this effect was diminished by alpha-Bgt. The labeling of the beta subunit was also inhibited by tetracaine and PCP. The effect of carbamylcholine, which binds to the alpha subunit, could be the result of an induced conformational change, which is propagated to the beta subunit and increases its labeling by [3H]AZ-PCP. A simple model which accommodates the binding and photoaffinity labeling data is described. According to the model, the high affinity PCP binding site is located between the alpha and beta receptor subunits, and the drug thus becomes attached simultaneously to both. Hypothetical overlapping recognition sites for PCP on these receptor subunits would allow binding (and labeling) with increased affinity in the presence of carbamylcholine with no increase in the number of available sites.
机译:合成了苯环的光不稳定衍生物(PCP),叠氮基苯环利定(AZ-PCP),并将其用于定位来自鱼雷鱼电器官的乙酰胆碱受体上的PCP结合位点。在黑暗中,微摩尔浓度的[3H] AZ-PCP与富集受体的膜制剂的结合符合单个解离常数(Kd = 2.65 microM),与[3H] PCP的结合非常相似。激动剂氨基甲酰胆碱提高了这些配体与受体的缔合速率(和亲和力),但并未改变可用结合位点的总数。在紫外线照射和凝胶电泳后,发现[3H] AZ-PCP可以特异性标记受体的α和β亚基。 α亚基条带的标记较重,丁卡因和PCP对其具有抑制作用,但α-Bungarotoxin(α-Bgt)对其没有抑制作用。氨基甲酰胆碱的添加增强了β亚基的标记; alpha-Bgt减弱了这种效果。 β亚基的标记也被丁卡因和PCP抑制。与α亚基结合的氨基甲酰胆碱的作用可能是诱导的构象变化的结果,该构象变化传播到β亚基并通过[3H] AZ-PCP增加其标记。描述了容纳结合和光亲和标记数据的简单模型。根据该模型,高亲和力的PCP结合位点位于α和β受体亚基之间,因此该药物同时同时附着于两者。在这些氨基甲胆碱存在下,PCP在这些受体亚基上的假想重叠识别位点将允许结合(和标记)具有增加的亲和力,而不增加可用位点的数量。

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