首页> 外文期刊>European journal of pain : >Molecular and pharmacological evidence for a facilitatory functional role of pre-synaptic GLUK2/3 kainate receptors on GABA release in rat trigeminal caudal nucleus.
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Molecular and pharmacological evidence for a facilitatory functional role of pre-synaptic GLUK2/3 kainate receptors on GABA release in rat trigeminal caudal nucleus.

机译:突触前GLUK2 / 3海藻酸酯受体对大鼠三叉神经尾核GABA释放的促进功能作用的分子和药理证据。

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Gamma-aminobutyric acid (GABA) and glutamate (GLU) are involved in nociceptive signals processing in the trigeminal system. In this study, we investigated the influence of excitatory transmission on GABA release in nerve terminals isolated from the rat trigeminal caudal nucleus (TCN).We utilize biochemical (superfused synaptosomes loaded with [(3) H]GABA) and morphological (immunofluorescence experiments with specific antibody) techniques.Our results show that GLU potentiates the release of [(3) H]GABA evoked by 9, 15 and 30?mM [K(+) ](e) ; 15?mM [K(+) ](e) -evoked [(3) H]GABA release was also reinforced by domoate and kainate (KA), two naturally occurring GLU-receptor agonists. The enhancement of 15?mM [K(+) ](e) -evoked [(3) H]GABA release produced by 100?μM KA was abolished by NBQX, a mixed AMPA/KA receptor antagonist, but was not affected by GYKI52466, a selective AMPA receptor antagonist. ATPA, a selective agonist for KA receptors containing the GLUK1 subunit, had no effect on depolarization-induced [(3) H]GABA release, and UBP310, which selectively antagonizes these same receptors, failed to reverse the KA-induced potentiation of 15?mM [K(+) ](e) -evoked [(3) H]GABA release. The KA-induced potentiation was also unaffected by concanavalin A (10?μM), a positive allosteric modulator of GLUK1- and GLUK2-containing KA receptors. Immunofluorescence experiments revealed that GABAergic nerve terminals in the TCN differentially expressed GLUK subunits, with GLUK2/3-positive terminals being twice more abundant than GLUK1-containing synaptosomes.These findings indicate that pre-synaptic KA receptors facilitating GABA release from TCN nerve terminals mainly express GLUK2/GLUK3 subunits, supporting the notion that different types of KA receptors are involved in the various stages of pain transmission.
机译:γ-氨基丁酸(GABA)和谷氨酸(GLU)参与三叉系统的伤害感受信号处理。在这项研究中,我们调查了兴奋性传递对大鼠三叉尾尾核(TCN)分离出的神经末梢中GABA释放的影响。我们利用了生化作用(超融合突触体负载了[(3)H] GABA)和形态学(免疫荧光实验,我们的结果表明,GLU增强了9、15和30?mM [K(+)](e)诱发的[(3)H] GABA的释放。 15?mM [K(+)](e)诱发的[(3)H] GABA释放也通过domoate和kainate(KA)(两种天然存在的GLU受体激动剂)得到增强。由AMPA / KA混合受体拮抗剂NBQX取消了100?μMKA引起的15?mM [K(+)](e)诱发的[(3)H] GABA释放的增强,但不受GYKI52466影响,一种选择性AMPA受体拮抗剂。 ATPA是含有GLUK1亚基的KA受体的选择性激动剂,对去极化诱导的[(3)H] GABA释放没有影响,而选择性拮抗这些相同受体的UBP310无法逆转KA诱导的15? mM [K(+)](e)诱发[(3)H] GABA释放。伴刀豆球蛋白A(10?μM)也不会影响KA诱导的增强,伴刀豆球蛋白A是GLUK1和含GLUK2的KA受体的正变构调节剂。免疫荧光实验显示,TCN中GABA能神经末梢差异表达GLUK亚基,GLUK2 / 3阳性末梢比含GLUK1的突触小体丰富两倍,这些结果表明,突触前KA受体促进TCN神经末梢释放GABA。 GLUK2 / GLUK3亚基,支持不同类型的KA受体参与疼痛传递的各个阶段的观点。

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