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首页> 外文期刊>The Journal of Experimental Biology >Physiological responses of ionotropic histamine receptors, PxHCLA and PxHCLB, to neurotransmitter candidates in a butterfly, Papilio xuthus
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Physiological responses of ionotropic histamine receptors, PxHCLA and PxHCLB, to neurotransmitter candidates in a butterfly, Papilio xuthus

机译:Inootropic组胺受体,PXHCLA和PXHCLB的生理反应,蝴蝶中神经递质候选物,Papilio Xuthus

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摘要

Histamine is the only known neurotransmitter released by arthropod photoreceptors. Synaptic transmission from photoreceptors to second-order neurons is mediated by the activation of histamine-gated chloride channels (HCLs). These histaminergic synapses have been assumed to be conserved among insect visual systems. However, our understanding of the channels in question has thus far been based on studies in flies. In the butterfly Papilio xuthus, we have identified two candidate histamine-gated chloride channels, PxHCLA and PxHCLB, and studied their physiological properties using a whole-cell patch-clamp technique. We studied the responses of channels expressed in cultured cells to histamine as well as to other neurotransmitter candidates, namely GABA, tyramine, serotonin, 0-It-glutamate and glycine. We found that histamine and GABA activated both PxHCLA and PxHCLB, while the other molecules did not. The sensitivity to histamine and GABA was consistently higher in PxHCLB than in PxHCLA. Interestingly, simultaneous application of histamine and GABA activated both PxHCLA and PxHCLB more strongly than either neurotransmitter individually; histamine and GABA may have synergistic effects on PxHCLs in the regions where they co-localize. Our results suggest that the physiological properties of the histamine receptors are basically conserved among insects, but that the response to GABA differs between butterflies and flies, implying variation in early visual processing among species.
机译:组胺是唯一通过节肢动物感光体释放的已知神经递质。来自光感受器到二阶神经元的突触透射通过活化组胺 - 氯化物通道(HCls)的激活介导。已经假设这些组蛋白能突触在昆虫视觉系统中被保守。然而,我们对有问题的渠道的理解已经基于苍蝇的研究。在蝴蝶Papilio Xuthus中,我们已经确定了两个候选组胺门氯化物通道,PXHCLA和PXHCLB,并使用全细胞贴片技术研究了它们的生理特性。我们研究了在培养细胞中表达到组胺的通道的反应,以及其他神经递质候选物,即GABA,酪胺,血清素,0-醇蛋白和甘氨酸。我们发现组胺和GABA活化了PXHCLA和PXHCLB,而其他分子没有。对于组胺和GABA的敏感性在PXHCLB中始终高于PXHCLA。有趣的是,同时施用组胺和GABA,比单独的神经递质更强烈地激活PXHCLA和PXHCLB;组胺和GABA可能对它们共同定位的地区的PXHCLS具有协同作用。我们的研究结果表明,组胺受体的生理特性基本上是昆虫之间的,但对GABA的反应在蝴蝶和苍蝇之间不同,暗示物种之间的早期视觉处理的变化。

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