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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Picrotoxin blockade of invertebrate glutamate-gated chloride channels: subunit dependence and evidence for binding within the pore.
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Picrotoxin blockade of invertebrate glutamate-gated chloride channels: subunit dependence and evidence for binding within the pore.

机译:无脊椎动物谷氨酸门控氯离子通道的微毒素阻断:亚基依赖性和孔内结合的证据。

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摘要

Glutamate-gated chloride channels have been described in nematodes, insects, crustaceans, and mollusks. Subunits from the nematode and insect channels have been cloned and are phylogenetically related to the GABA and glycine ligand-gated chloride channels. Ligand-gated chloride channels are blocked with variable potency by the nonselective blocker picrotoxin. The first two subunits of the glutamate-gated chloride channel family, GluClalpha and GluClbeta, were cloned from the free living nematode Caenorhabditis elegans. In this study, we analyze the blockade of these novel channels by picrotoxin. In vitro synthesized GluClalpha and GluClbeta RNAs were injected individually or coinjected into Xenopus oocytes. The EC50 values for picrotoxin block of homomeric GluClalpha and GluClbeta were 59 microM and 77 nM, respectively. Picrotoxin block of homomeric GluClbeta channels was promoted during activation of membrane current with glutamate. In addition, recovery from picrotoxin block was faster during current activation by glutamate. A chimeric channel between the N-terminal extracellular domain of GluClalpha and the C-terminal membrane-spanning domain of GluClbeta localized the higher affinity picrotoxin binding site to the membrane-spanning domains of GluClbeta. A point mutation within the M2 membrane-spanning domain of GluClbeta reduced picrotoxin sensitivity >10,000-fold. We conclude that picrotoxin blocks GluCl channels by binding to a site accessible when the channel is open.
机译:在线虫,昆虫,甲壳类和软体动物中已经描述了谷氨酸盐门控的氯离子通道。来自线虫和昆虫通道的亚基已被克隆,并与GABA和甘氨酸配体门控的氯离子通道在系统发育上相关。配体门控的氯离子通道被非选择性阻滞剂苦味毒素以可变的效力阻断。谷氨酸门控氯通道家族的前两个亚基,GluClalpha和GluClbeta,是从游离的线虫秀丽隐杆线虫中克隆的。在这项研究中,我们分析了pictotoxin对这些新型通道的阻断作用。体外合成的GluClalpha和GluClbeta RNA分别注射或共注射到非洲爪蟾卵母细胞中。同源GluClalpha和GluClbeta的微毒素阻断区的EC50值分别为59 microM和77 nM。谷氨酸激活膜电流期间,促进了同质GluClbeta通道的微毒素阻断。另外,在谷氨酸激活期间,从微毒素阻断中恢复更快。 GluClalpha的N端胞外域和GluClbeta的C端跨膜域之间的嵌合通道将更高亲和力的微毒素结合位点定位在GluClbeta的跨膜域上。 GluClbeta的M2跨膜结构域内的点突变降低了微毒素的敏感性> 10,000倍。我们得出的结论是,微毒素通过与通道打开时可访问的位点结合来阻断GluCl通道。

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