Maksay G
Central Research Institute for Chemistry, Hungarian Academy of Sciences, Budapest.
J Neurochem. 1990 Jun;54(6):1961-6. doi: 10.1111/j.1471-4159.1990.tb04898.x.
Binding to gamma-aminobutyric acid-A (GABAA) receptors was studied in synaptosomal membranes of rat brain. Dissociation of [3H]muscimol and the GABAA antagonist [3H]2-(3-carboxypropyl)-3-amino-6-p-methoxyphenylpyridazinium bromide ([3H]SR 95531) binding elicited by 100-fold dilution was accelerated by excess of GABA or SR 95531. Control dissociation might be retarded by rebinding. The contribution of a rapid first phase of dissociation of the agonist [3H]muscimol was preferentially enhanced by SR 95531. In contrast, the dissociation of [3H]SR 95531 binding was preferentially accelerated by GABA. These opposite preferential accelerations can be explained by negative heterotropic cooperativity and a reversed affinity relationship of agonists and antagonists to GABAA binding sites with different affinities. Modification of the membranes by p-diazobenzenesulfonic acid (DSA) selectively decreased the accelerating effect of GABA on the dissociation of [3H]SR 95531 binding. [3H]Strychnine binding was studied in a membrane preparation of rat spinal cord. The dissociation of the antagonist [3H]strychnine elicited by dilution was preferentially accelerated by glycine. Again, pretreatment with DSA decreased selectively this negative heterotropic (i.e., allosteric) interaction. Chemical modification by DSA might be attributed to tyrosine residues responsible for similar allosteric interactions for the GABA- and glycine-gated chloride channels.
在大鼠脑突触体膜中研究了与γ-氨基丁酸-A(GABAA)受体的结合。100倍稀释引起的[3H]蝇蕈醇和GABAA拮抗剂[3H]2-(3-羧丙基)-3-氨基-6-对甲氧基苯基哒嗪鎓溴化物([3H]SR 95531)结合的解离,因过量的GABA或SR 95531而加速。对照解离可能因再结合而延迟。激动剂[3H]蝇蕈醇解离的快速第一阶段的贡献优先被SR 95531增强。相反,[3H]SR 95531结合的解离优先被GABA加速。这些相反的优先加速作用可以用负异向协同作用以及激动剂和拮抗剂对具有不同亲和力的GABAA结合位点的亲和力关系逆转来解释。对氨基苯磺酸(DSA)对膜的修饰选择性地降低了GABA对[3H]SR 95531结合解离的加速作用。在大鼠脊髓膜制剂中研究了[3H]士的宁结合。稀释引起的拮抗剂[3H]士的宁的解离优先被甘氨酸加速。同样,用DSA预处理选择性地降低了这种负异向(即变构)相互作用。DSA的化学修饰可能归因于酪氨酸残基,其对GABA和甘氨酸门控氯离子通道具有类似的变构相互作用。