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银杏内酯在重组人 ρ1 GABAC 受体上的混合拮抗作用。

Mixed antagonistic effects of the ginkgolides at recombinant human ρ1 GABAC receptors.

机构信息

Discipline of Pharmacology, School of Medical Sciences, Faculty of Medicine, University of Sydney, Australia.

出版信息

Neuropharmacology. 2012 Nov;63(6):1127-39. doi: 10.1016/j.neuropharm.2012.06.067. Epub 2012 Jul 22.

Abstract

The diterpene lactones of Ginkgo biloba, ginkgolides A, B and C are antagonists at a range of Cys-loop receptors. This study examined the effects of the ginkgolides at recombinant human ρ(1) GABA(C) receptors expressed in Xenopus oocytes using two-electrode voltage clamp. The ginkgolides were moderately potent antagonists with IC(50)s in the μM range. At 10 μM, 30 μM and 100 μM, the ginkgolides caused rightward shifts of GABA dose-response curves and reduced maximal GABA responses, characteristic of noncompetitive antagonists, while the potencies showed a clear dependence on GABA concentration, indicating apparent competitive antagonism. This suggests that the ginkgolides exert a mixed-type antagonism at the ρ(1) GABA(C) receptors. The ginkgolides did not exhibit any obvious use-dependent inhibition. Fitting of the data to a number of kinetic schemes suggests an allosteric inhibition as a possible mechanism of action of the ginkgolides which accounts for their inhibition of the responses without channel block or use-dependent inhibition. Kinetic modelling predicts that the ginkgolides exhibit saturation of antagonism at high concentrations of GABA, but this was only partially observed for ginkgolide B. It also suggests that there may be different binding sites in the closed and open states of the receptor, with a higher affinity for the receptor in the closed state.

摘要

银杏叶中的双萜内酯,银杏内酯 A、B 和 C 是一系列 Cys 环受体的拮抗剂。本研究使用双电极电压钳技术,在非洲爪蟾卵母细胞中表达的重组人 ρ(1) GABA(C)受体上检测了银杏内酯的作用。银杏内酯是中等效力的拮抗剂,IC(50) 在 μM 范围内。在 10 μM、30 μM 和 100 μM 时,银杏内酯引起 GABA 剂量反应曲线的右移,并降低 GABA 的最大反应,这是典型的非竞争性拮抗剂特征,而效力显示出对 GABA 浓度的明显依赖性,表明存在明显的竞争性拮抗作用。这表明银杏内酯在 ρ(1) GABA(C)受体上发挥混合类型的拮抗作用。银杏内酯没有表现出任何明显的使用依赖性抑制。对数据进行拟合的几种动力学方案表明,变构抑制可能是银杏内酯作用机制之一,这可以解释它们在没有通道阻断或使用依赖性抑制的情况下抑制反应。动力学模型预测,银杏内酯在 GABA 的高浓度下表现出拮抗作用的饱和,但这在银杏内酯 B 中仅部分观察到。它还表明,受体的关闭和开放状态可能存在不同的结合位点,与受体在关闭状态下的亲和力更高。

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