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昆虫视觉系统和胸神经节中假定的组胺门控氯离子通道亚基。

Putative histamine-gated chloride channel subunits of the insect visual system and thoracic ganglion.

作者信息

Witte Ines, Kreienkamp Hans-Juergen, Gewecke Michael, Roeder Thomas

机构信息

Zoologisches Institut, Abteilung Neurophysiologie, Universität Hamburg, Hamburg, Germany.

出版信息

J Neurochem. 2002 Nov;83(3):504-14. doi: 10.1046/j.1471-4159.2002.01076.x.

Abstract

Histamine-gated chloride channels, members of the ligand-gated ion channel superfamily, are thought to be peculiar for arthropods. Their cognate ligand, histamine, is the transmitter of all arthropod photoreceptors and of thoracic mechanoreceptors. To identify putative histamine-gated chloride channel subunits we scanned the Drosophila genome for putative ligand-gated chloride channel subunits and found 12 candidate genes. We found four groups of transcripts based on their expression pattern. Only members of the last group show an expression pattern that is consistent with our knowledge about histamine-gated chloride channels in insects. In the brain these transcripts (Dm HA-Cl I and II) are exclusively present in interneurones postsynaptic to photoreceptors. Within the lamina (the first visual ganglion) only the L1-L3 neurones are labelled. The lack of non-photoreceptor dependent staining in the brain indicates that mechanosensory transmission differs between the head and the thorax/abdomen, and that the receptors responding to brain-intrinsic histaminergic cells use different signalling pathways. The putative histamine-gated chloride channels show the greatest homology mammalian glycine receptors. These ion-channels are the first specific molecular markers for postsynaptic cells in the insect visual system, thus representing ideal tools to study its physiology and development.

摘要

组胺门控氯离子通道是配体门控离子通道超家族的成员,被认为是节肢动物所特有的。它们的同源配体组胺是所有节肢动物光感受器和胸部机械感受器的递质。为了鉴定假定的组胺门控氯离子通道亚基,我们在果蝇基因组中搜索假定的配体门控氯离子通道亚基,发现了12个候选基因。根据它们的表达模式,我们发现了四组转录本。只有最后一组的成员显示出与我们对昆虫组胺门控氯离子通道的了解一致的表达模式。在大脑中,这些转录本(Dm HA-Cl I和II)仅存在于光感受器突触后的中间神经元中。在视叶(第一个视觉神经节)内,只有L1-L3神经元被标记。大脑中缺乏非光感受器依赖性染色表明,头部与胸部/腹部的机械感觉传递不同,并且对脑内组胺能细胞作出反应的受体使用不同的信号通路。假定的组胺门控氯离子通道与哺乳动物甘氨酸受体具有最大的同源性。这些离子通道是昆虫视觉系统中突触后细胞的首个特异性分子标记,因此是研究其生理学和发育的理想工具。

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