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γ-氨基丁酸、拟除虫菊酯和巴比妥酸盐对大鼠脑中[35S]叔丁基双环硫代磷酸酯结合位点的调节作用

Regulation of [35S]t-butylbicyclophosphorothionate binding sites in rat brain by GABA, pyrethroid and barbiturate.

作者信息

Seifert J, Casida J E

出版信息

Eur J Pharmacol. 1985 Sep 24;115(2-3):191-8. doi: 10.1016/0014-2999(85)90691-0.

Abstract

GABA regulates the binding of [35S]t-butylbicyclophosphorothionate ([35S]TBPS) within the GABA receptor-ionophore complex by decreasing the rate of radioligand association and increasing the rate of dissociation but in different ways for the EDTA/water-dialyzed rat brain membranes and a solubilized preparation obtained on treatment with the zwitterionic detergent CHAPS. In the membranes, GABA at 0.3-1 microM is a non-competitive inhibitor of [35S]TBPS binding, affecting the density of binding sites but not the affinity of the receptor, while at 5 microM both the apparent density and affinity are significantly decreased. On treatment with CHAPS the solubilized preparation and the corresponding pellet fraction become less sensitive to GABA which even at 5 microM acts only as a non-competitive inhibitor. CHAPS solubilization decreases the sensitivity of the receptor-[35S]TBPS complex to GABA-induced dissociation. GABA at micromolar levels also greatly influences the action of compounds within the TBPS domain, facilitating and modulating displacement of [35S]TBPS from EDTA/water-dialyzed membranes by the alpha-cyanopyrethroid cypermethrin and the barbiturate 5-(1',3'-dimethylbutyl)-5-ethylbarbiturate. Large differences in the Hill numbers indicate that different mechanisms may be involved in GABA modulation of the pyrethroid and barbiturate sites. In contrast, GABA does not effect [35S]TBPS displacement by photoheptachlor epoxide which acts directly at the TBPS binding site.

摘要

γ-氨基丁酸(GABA)通过降低放射性配体结合速率并提高解离速率来调节γ-氨基丁酸受体-离子载体复合物中[35S]叔丁基双环磷硫代酸盐([35S]TBPS)的结合,但对于经乙二胺四乙酸/水透析的大鼠脑膜和用两性离子去污剂CHAPS处理后得到的可溶制剂,其调节方式不同。在脑膜中,0.3 - 1微摩尔的GABA是[35S]TBPS结合的非竞争性抑制剂,影响结合位点的密度但不影响受体的亲和力,而在5微摩尔时,表观密度和亲和力均显著降低。用CHAPS处理后,可溶制剂和相应的沉淀部分对GABA的敏感性降低,即使在5微摩尔时GABA也仅作为非竞争性抑制剂起作用。CHAPS增溶降低了受体-[35S]TBPS复合物对GABA诱导解离的敏感性。微摩尔水平的GABA也极大地影响了TBPS区域内化合物的作用,促进并调节α-氰基拟除虫菊酯氯氰菊酯和巴比妥酸盐5-(1',3'-二甲基丁基)-5-乙基巴比妥酸盐从经乙二胺四乙酸/水透析的膜中置换[35S]TBPS。希尔系数的巨大差异表明,GABA对拟除虫菊酯和巴比妥酸盐位点的调节可能涉及不同机制。相比之下,GABA不影响光七氯环氧化物对[35S]TBPS的置换,光七氯环氧化物直接作用于TBPS结合位点。

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