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人类EAA4(GluR6)谷氨酸受体的功能表达及药理学特性:一种对海人藻酸具有选择性的通道亚基

Functional expression and pharmacological characterization of the human EAA4 (GluR6) glutamate receptor: a kainate selective channel subunit.

作者信息

Hoo K H, Nutt S L, Fletcher E J, Elliott C E, Korczak B, Deverill R M, Rampersad V, Fantaske R P, Kamboj R K

机构信息

Allelix Biopharmaceuticals Inc., Mississauga, Ontario, Canada.

出版信息

Recept Channels. 1994;2(4):327-37.

PMID:7536611
Abstract

A cDNA encoding an ionotropic glutamate receptor subunit protein humEAA4 (GluR6), has been cloned from a human fetal brain library. This cDNA when expressed in COS or HEK-293 cells is associated with high-affinity kainate receptor binding and ion channel formation. We have successfully established cell lines stably expressing humEAA4 in HEK-293 cells This is the first report of the establishment of stable cell lines expressing a glutamate receptor channel. The relative potency of compounds for displacing [3H]-kainate binding to humEAA4 receptors expressed in COS or HEK-293 cells is domoate > kainate > quisqualate > 6-cyano-7-nitroquinoxaline-2,3-dione > L-glutamate = 6,7- dinitroquinoxaline-2,3-dione > dihydrokainate. Applications of kainate, glutamate, and domoate but not AMPA evoked rapidly desensitizing currents in cells expressing homo-oligomeric humEAA4 in a concentration dependent manner. The order of potency was: domoate > kainate > L-glutamate. Although AMPA did not itself activate humEAA4 receptors it did reduce, to a limited extent, kainate-evoked responses. AMPA may therefore be a weak partial agonist for this receptor. To date this effect has not been demonstrated with rat GluR6. It is possible that subtle species differences may exist in the nature of agonist receptor interaction. Kainate evoked currents were attenuated by the quinoxalinediones CNQX and DNQX but not by DAP5. The receptor desensitization was attenuated on application of concanavalin A. Ion-permeability studies indicated that the receptor-linked ion channel is permeable to both Na+ and Ca2+ ions.

摘要

从人胎脑文库中克隆出一个编码离子型谷氨酸受体亚基蛋白humEAA4(GluR6)的cDNA。该cDNA在COS或HEK - 293细胞中表达时,与高亲和力的海人藻酸受体结合及离子通道形成有关。我们已成功在HEK - 293细胞中建立了稳定表达humEAA4的细胞系。这是关于建立表达谷氨酸受体通道的稳定细胞系的首次报道。在COS或HEK - 293细胞中表达的humEAA4受体上,用于取代[3H] - 海人藻酸结合的化合物的相对效力顺序为:软骨藻酸>海人藻酸>quisqualate>6 - 氰基 - 7 - 硝基喹喔啉 - 2,3 - 二酮>L - 谷氨酸 = 6,7 - 二硝基喹喔啉 - 2,3 - 二酮>二氢海人藻酸。在表达同型寡聚humEAA4的细胞中,海人藻酸、谷氨酸和软骨藻酸(而非AMPA)的应用以浓度依赖的方式引起快速脱敏电流。效力顺序为:软骨藻酸>海人藻酸>L - 谷氨酸。尽管AMPA本身不激活humEAA4受体,但它在一定程度上确实会降低海人藻酸诱发的反应。因此,AMPA可能是该受体的一种弱部分激动剂。迄今为止,大鼠GluR6尚未证实有此效应。激动剂与受体相互作用的性质可能存在细微的物种差异。海人藻酸诱发的电流被喹喔啉二酮CNQX和DNQX减弱,但未被DAP5减弱。应用伴刀豆球蛋白A可减弱受体脱敏。离子通透性研究表明,与受体相连的离子通道对Na +和Ca2 +离子均通透。

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