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Presynaptic group I metabotropic glutamate receptors modulate synaptic transmission in the rat superior colliculus via 4-AP sensitive K+ channels

机译:突触前组I代谢型谷氨酸受体通过4-AP敏感的K +通道调节大鼠上丘的突触传递

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摘要

Group I metabotropic glutamate receptors (mGluRs) are thought to be important modulators of neuronal function in the superior colliculus (SC). Here, we investigated the pharmacology and signalling mechanisms underlying group I mGluR-mediated inhibition of neuronal excitability and synaptic transmission in the rat SC slice.The group I agonist (RS)-3,5-dihydroxyphenylglycine (DHPG) potently depressed synaptically evoked excitatory postsynaptic potentials (EPSPs), currents (EPSCs), and action potentials in a dose-dependent manner (IC50: 6.3 μM). This was strongly reduced by the broad-spectrum antagonist (+)-alpha-methyl-4-carboxyphenylglycine (MCPG, 1 mM, ∼95% reduction), by the mGluR1 antagonist LY367385 (100 μM, ∼80% reduction) but not by the mGluR5 antagonist 6-methyl-2-(phenylethynyl)-pyridine (MPEP, 1–100 μM).The putative mGluR5-specific agonist (RS)-2-chloro-5-hydroxyphenylglycine (CHPG, 500 μM) also inhibited EPSPs. Interestingly, CHPG's actions were not blocked by MPEP, but LY367385 (100 μM) reduced the effect of CHPG by 50%.Inhibition induced by DHPG was independent of phospholipase C (PLC)/protein kinase C pathways, and did not require intact intracellular Ca2+ stores. It was not abolished but enhanced by the GABAA antagonist bicuculline (5 μM), suggesting that DHPG's action was not due to facilitated inhibition or changes in neuronal network activity.The K+ channel antagonist 4-aminopyridine (4-AP, 50–100 μM) converted the inhibitory effect of DHPG into facilitation. Paired-pulse depression was strongly reduced by DHPG, an effect that was also prevented by 4-AP.Our data indicate that group I agonists regulate transmitter release, presumably via an autoreceptor in the SC. This receptor may be involved in adaptation to repetitive stimulation via a non-PLC mediated pathway.
机译:I类代谢型谷氨酸受体(mGluRs)被认为是上丘(SC)中神经元功能的重要调节剂。在这里,我们研究了I组mGluR介导的抑制大鼠SC切片中神经元兴奋性和突触传递的药理学和信号传导机制.I组激动剂(RS)-3,5-二羟基苯基甘氨酸(DHPG)强烈抑制突触引起的突触后突触。电位(EPSP),电流(EPSC)和动作电位呈剂量依赖性(IC50:6.3μM)。广谱拮抗剂(+)-α-甲基-4-羧基苯基甘氨酸(MCPG,1 mM,降低约95%),mGluR1拮抗剂LY367385(100μM,降低约80%)强烈地降低了这一作用,但没有降低mGluR5拮抗剂6-甲基-2-(苯基乙炔基)-吡啶(MPEP,1–100μM)。假定的mGluR5特异性激动剂(RS)-2-氯-5-羟基苯基甘氨酸(CHPG,500μM)也抑制EPSPs。有趣的是,MPPG并没有阻止CHPG的作用,但是LY367385(100μM)使CHPG的作用降低了50%.DHPG诱导的抑制作用独立于磷脂酶C(PLC)/蛋白激酶C途径,不需要完整的细胞内Ca2 +商店。它并没有被GABAA拮抗剂bicuculline(5μM)消除,而是被增强了,表明DHPG的作用不是由于抑制或神经网络活动的改变而引起的。K+通道拮抗剂4-aminopyridine(4-AP,50–100μM)将DHPG的抑制作用转化为促进作用。 DHPG大大降低了成对的脉冲抑制,4-AP也阻止了这种作用。我们的数据表明,I类激动剂可能通过SC中的自体受体来调节递质的释放。该受体可能通过非PLC介导的途径参与对重复刺激的适应。

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