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大鼠皮质突触神经小体中γ-氨基丁酸A型受体的印防己毒素结合位点研究

Studies on picrotoxin binding sites of GABAA receptors in rat cortical synaptoneurosomes.

作者信息

Ito Y, Ho I K

机构信息

Department of Pharmacology, College of Pharmacy, Nihon University, Chiba, Japan.

出版信息

Brain Res Bull. 1994;33(4):373-8. doi: 10.1016/0361-9230(94)90279-8.

Abstract

Experiments were performed to characterize [35S]TBPS binding in rat cortical synaptoneurosomes, which have vesicular structures containing both pre- and postsynaptic elements. Scatchard analysis revealed a single component of [35S]TBPS binding sites with KD and Bmax values of 76.1 nM and 1.97 pmoles/mg protein, respectively, under physiological conditions. GABA and muscimol inhibited [35S]TBPS binding in a concentration-dependent manner. IC50 values of these GABAA agonists in displacing synaptoneurosomal [35S]TBPS binding are comparable to previously reported EC50 values of the agonist-stimulated 36Cl- uptake in synaptoneurosomes by these agents. Furthermore, the IC50 values of these GABAA agonists were better correspondence to those determined by [3H]muscimol binding in synaptoneurosomal preparations as reported by Delorey and Brown (3) than those determined in membrane preparations. Although bicuculline increased [35S]TBPS binding in a concentration dependent manner in cortical membranes, it did not affect synaptoneurosomal [35S]TBPS binding. Benzodiazepine agonists and inverse agonists (0.1 to 10 microM) did not show any effects on the binding in the absence of muscimol. However, benzodiazepine agonists potentiated and inverse agonists antagonized muscimol-induced inhibition of synaptoneurosomal [35S]TBPS binding. In addition, an anesthetic steroid, THDOC, and pentobarbital inhibited synaptoneurosomal [35S]TBPS binding in a concentration dependent manner. These results suggest that allosteric modulation of [35S]TBPS binding by various ligands which interact with GABAA supramolecular complexes remain intact in synaptoneurosomes. It appears that this preparation is useful for investigating correlation between functional 36Cl- uptake and individual binding studies of each of the GABAA receptor complex.

摘要

开展了实验以表征大鼠皮质突触神经小体中[35S]TBPS的结合情况,该突触神经小体具有包含突触前和突触后元件的囊泡结构。斯卡查德分析显示,在生理条件下,[35S]TBPS结合位点的单一成分的KD和Bmax值分别为76.1 nM和1.97 pmoles/mg蛋白质。GABA和蝇蕈醇以浓度依赖性方式抑制[35S]TBPS结合。这些GABAA激动剂置换突触神经小体中[35S]TBPS结合的IC50值与先前报道的这些药物刺激突触神经小体中36Cl-摄取的EC50值相当。此外,这些GABAA激动剂的IC50值与Delorey和Brown(3)报道的突触神经小体制剂中通过[3H]蝇蕈醇结合测定的值比在膜制剂中测定的值更相符。虽然荷包牡丹碱在皮质膜中以浓度依赖性方式增加[35S]TBPS结合,但它不影响突触神经小体中[35S]TBPS结合。苯二氮䓬激动剂和反向激动剂(0.1至10 microM)在没有蝇蕈醇的情况下对结合没有任何影响。然而,苯二氮䓬激动剂增强且反向激动剂拮抗蝇蕈醇诱导的突触神经小体中[35S]TBPS结合的抑制。此外,一种麻醉类固醇THDOC和戊巴比妥以浓度依赖性方式抑制突触神经小体中[35S]TBPS结合。这些结果表明,与GABAA超分子复合物相互作用的各种配体对[35S]TBPS结合的变构调节在突触神经小体中保持完整。看来这种制剂可用于研究功能性36Cl-摄取与每个GABAA受体复合物的个体结合研究之间的相关性。

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