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在完整的中国仓鼠卵巢细胞中,氯丙嗪和苯哌嗪与人 D-受体的非竞争性相互作用。

Non-competitive interaction between raclopride and spiperone on human D-receptors in intact Chinese hamster ovary cells.

机构信息

Department of Molecular and Biochemical Pharmacology, Institute for Molecular Biology and Biotechnology, Free University of Brussels (VUB), Pleinlaan 2, B-1050 Brussels, Belgium.

出版信息

Fundam Clin Pharmacol. 2010 Jun;24(3):283-91. doi: 10.1111/j.1472-8206.2009.00793.x. Epub 2009 Nov 10.

Abstract

We recently investigated the binding properties of the antagonists [(3)H]-raclopride and [(3)H]-spiperone to intact Chinese hamster ovary cells expressing recombinant human D(2long)-dopamine receptors (CHO-D(2L) cells). Compared with saturation binding with [(3)H]-raclopride, raclopride reduced [(3)H]-spiperone binding with to low potency in competition binding experiments. The present findings illustrate the ability of spiperone to inhibit [(3)H]-raclopride binding non-competitively. While raclopride only decreases the apparent K(D) of [(3)H]-raclopride in saturation binding experiments, spiperone only decreases the number of sites to which [(3)H]-raclopride binds with high affinity. Also, while the IC(50) of raclopride depends on the concentration of [(3)H]-raclopride in competition experiments, this is not the case for spiperone. Kinetic studies reveal that the binding of raclopride at its high affinity sites does not affect the association of subsequently added [(3)H]-spiperone nor the rebinding of freshly dissociated [(3)H]-spiperone to the same or surrounding receptors. Yet, spiperone does not affect the dissociation rate of [(3)H]-raclopride and raclopride does not affect the (genuine) dissociation rate of [(3)H]-spiperone. The easiest way to interpret the present findings in molecular terms is to assume that D(2L)-receptors or their dimeric complexes possess two distinct binding sites: one with high affinity/accessibility for [(3)H]-raclopride and the other one with high affinity/accessibility for [(3)H]-spiperone. The ability of bound spiperone to inhibit high affinity raclopride binding while the reverse is not the case suggests for the occurrence of non-reciprocal allosteric interactions. These new findings could point at the occurrence of allosteric interactions between different classes of D(2)-receptor antagonists.

摘要

我们最近研究了拮抗剂[(3)H]-氯丙嗪和[(3)H]-苯哌嗪与表达重组人 D2长多巴胺受体的中国仓鼠卵巢细胞(CHO-D2L 细胞)的结合特性。与[(3)H]-氯丙嗪的饱和结合相比,氯丙嗪在竞争结合实验中以低效力降低[(3)H]-苯哌嗪的结合。本研究结果表明,苯哌嗪具有非竞争性抑制[(3)H]-氯丙嗪结合的能力。虽然氯丙嗪仅降低饱和结合实验中[(3)H]-氯丙嗪的表观 K(D),但苯哌嗪仅降低与[(3)H]-氯丙嗪高亲和力结合的结合位点数量。此外,虽然氯丙嗪的 IC50在竞争实验中取决于[(3)H]-氯丙嗪的浓度,但苯哌嗪则不然。动力学研究表明,氯丙嗪在其高亲和力位点的结合不影响随后加入的[(3)H]-苯哌嗪的结合,也不影响新鲜解离的[(3)H]-苯哌嗪重新结合到相同或周围的受体。然而,苯哌嗪不影响[(3)H]-氯丙嗪的解离速率,氯丙嗪也不影响[(3)H]-苯哌嗪的(真实)解离速率。从分子角度解释目前发现的最简单方法是假设 D2L-受体或其二聚体复合物具有两个不同的结合位点:一个对[(3)H]-氯丙嗪具有高亲和力/可及性,另一个对[(3)H]-苯哌嗪具有高亲和力/可及性。结合的苯哌嗪能够抑制高亲和力的氯丙嗪结合,而反之则不能,这表明存在非互惠变构相互作用。这些新发现可能表明不同类别的 D2-受体拮抗剂之间存在变构相互作用。

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