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The actions of chloride channel blockers, barbiturates and a benzodiazepine on Caenorhabditis elegans glutamate- and ivermectin-gated chloride channel subunits expressed in Xenopus oocytes

机译:氯通道阻滞剂,巴比妥类药物和苯二氮卓类药物对非洲爪蟾卵母细胞表达的秀丽隐杆线虫谷氨酸和伊维菌素门控氯通道亚基的作用

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摘要

The pharmacology of Caenorhabditis elegans glutamate-gated chloride (GluCl) channels was determined by making intracellular voltage-clamp recordings from Xenopus oocytes expressing GluCl subunits. As previously reported (Cully et al. 1994), GluClalpha1beta responded to glutamate (in a picrotoxin sensitive manner) and ivermectin, while GluClbeta responded only to glutamate and GluClalpha1 only to ivermectin. This assay was used to further investigate the action of chloride channel compounds. The arylaminobenzoate, NPPB, reduced the action of glutamate on the heteromeric GluClalpha1beta channel (IC(50) 6.03 +/- 0.81 microM). The disulphonate stilbene, DNDS, blocked the effect of both glutamate and ivermectin on GluClalpha1beta channels, the action of glutamate on GluClbeta subunits, and the effect of ivermectin on GluClalpha1 subunits (IC(50)s 1.58-3.83 microM). Surprisingly, amobarbital and pentobarbital, otherwise known as positive allosteric modulators of ligand-gated chloride channels, acted as antagonists. Both compounds reduced the action of glutamate on the GluClalpha1beta heteromer (IC(50)s of 2.04 +/- 0.5 and 17.56 +/- 2.16 microM, respectively). Pentobarbital reduced the action of glutamate on the GluClbeta homomeric subunit with an IC(50) of 0.59 +/- 0.09 microM, while reducing the responses to ivermectin on both GluClalpha1beta and GluClalpha1 with IC(50)s of 8.7 +/- 0.5 and 12.9 +/- 2.5 microM, respectively. For all the antagonists, the mechanism is apparently non-competitive. The benzodiazepine, flurazepam had no apparent effect on these glutamate- and ivermectin-gated chloride channel subunits. Thus, arylaminobenzoates, disulphonate stilbenes, and barbiturates are non-competitive antagonists of C. elegans GluCl channels.
机译:秀丽隐杆线虫谷氨酸门控氯化物(GluCl)通道的药理作用是通过从表达GluCl亚基的非洲爪蟾卵母细胞中进行细胞内电压钳记录来确定的。如先前的报道(Cully等,1994),GluClalpha1beta对谷氨酸(对微毒素敏感的方式)和伊维菌素有反应,而GluClbeta仅对谷氨酸和GluClalpha1对伊维菌素有反应。该测定法用于进一步研究氯通道化合物的作用。芳基氨基苯甲酸酯NPPB减少了谷氨酸对异聚GluClalpha1beta通道的作用(IC(50)6.03 +/- 0.81 microM)。二磺酸二苯乙烯DNDS阻止了谷氨酸和伊维菌素对GluClalpha1beta通道的作用,谷氨酸对GluClbeta亚基的作用以及伊维菌素对GluClalpha1亚基的作用(IC(50)s 1.58-3.83 microM)。出人意料的是,氨巴比妥和戊巴比妥,也称为配体-门控氯离子通道的正变构调节剂,起着拮抗剂的作用。两种化合物都降低了谷氨酸对GluClalpha1beta异聚体的作用(IC(50)s分别为2.04 +/- 0.5和17.56 +/- 2.16 microM)。戊巴比妥减少谷氨酸对GluClbeta同源亚基的作用,IC(50)为0.59 +/- 0.09 microM,同时降低对伊维菌素的响应,IC(50)的8.7(+/- 0.5)和12.9时对伊维菌素的反应分别为+/- 2.5 microM。对于所有拮抗剂,该机制显然是非竞争性的。苯二氮卓,氟拉西m对这些谷氨酸和伊维菌素门控的氯通道亚基没有明显作用。因此,芳基氨基苯甲酸酯,二磺酸二甲斯蒂苯酯和巴比妥酸酯是秀丽隐杆线虫GluCl通道的非竞争性拮抗剂。

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