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鸟嘌呤核苷酸与金鱼脑中[3H]海人酸及6-[3H]氰基-7-硝基喹喔啉-2,3-二酮结合的相互作用。

Interaction of guanine nucleotides with [3H]kainate and 6-[3H]cyano-7-nitroquinoxaline-2,3-dione binding in goldfish brain.

作者信息

Barnes J M, Murphy P A, Kirkham D, Henley J M

机构信息

Department of Pharmacology, Medical School, University of Birmingham, England.

出版信息

J Neurochem. 1993 Nov;61(5):1685-91. doi: 10.1111/j.1471-4159.1993.tb09804.x.

Abstract

Recent reports have suggested that a major proportion of [3H]kainate binding in goldfish brain is to a novel form of G-protein-linked glutamate receptor. Here we confirm that guanine nucleotides decrease [3H]kainate binding in goldfish brain membranes, but that binding is also reduced to a similar extent under conditions where G-protein modulation should be minimised. Inclusion of GTP gamma S resulted in an approximately twofold decrease in the affinity of [3H]kainate binding and a 50% reduction in the apparent Bmax values in both Mg2+/Na+ and Mg2+/Na(+)-free buffer when assayed at 0 degrees C. The pharmacology of [3H]kainate binding is similar to that of well-characterised ionotropic kainate receptors but unlike that of known metabotropic glutamate receptors, with neither 1S,3R-amino-1,3-cyclopentanedicarboxylic acid (1S,3R-ACPD) nor ibotenic acid being effective competitors. The molecular mass of the [3H]kainate binding protein, as determined by radiation inactivation, was 40 kDa, similar to the subunit sizes of other lower vertebrate kainate binding proteins that are believed to comprise ligand-gated ion channels. Furthermore, GTP gamma S also inhibited the binding of the non-NMDA receptor-selective antagonist 6-[3H]cyano-7-nitroquinoxaline-2,3-dione. These data strongly suggest that the regulatory interaction between guanine nucleotides and [3H]kainate and 6-[3H]cyano-7-nitroquinoxaline-2,3-dione binding is complex and involves competition at the agonist/antagonist binding site in addition to any G-protein-mediated modulation.

摘要

最近的报告表明,金鱼脑中[3H]海藻酸盐结合的很大一部分是与一种新型的G蛋白偶联谷氨酸受体结合。在此我们证实,鸟嘌呤核苷酸可降低金鱼脑膜中[3H]海藻酸盐的结合,但在应尽量减少G蛋白调节的条件下,结合也会以类似程度降低。在0℃测定时,加入GTPγS会导致[3H]海藻酸盐结合亲和力在Mg2+/Na+和无Mg2+/Na+缓冲液中均降低约两倍,表观Bmax值降低50%。[3H]海藻酸盐结合的药理学特性与特征明确的离子型海藻酸盐受体相似,但与已知的代谢型谷氨酸受体不同,1S,3R-氨基-1,3-环戊二羧酸(1S,3R-ACPD)和鹅膏蕈氨酸均不是有效的竞争剂。通过辐射失活测定的[3H]海藻酸盐结合蛋白的分子量为40 kDa,与其他被认为构成配体门控离子通道的低等脊椎动物海藻酸盐结合蛋白的亚基大小相似。此外,GTPγS也抑制非NMDA受体选择性拮抗剂6-[3H]氰基-7-硝基喹喔啉-2,3-二酮的结合。这些数据强烈表明,鸟嘌呤核苷酸与[3H]海藻酸盐和6-[3H]氰基-7-硝基喹喔啉-2,3-二酮结合之间的调节相互作用是复杂的,除了任何G蛋白介导的调节外,还涉及在激动剂/拮抗剂结合位点的竞争。

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