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GABA Transporters Regulate a Standing GABAC Receptor-Mediated Current at a Retinal Presynaptic Terminal

机译:GABA转运蛋白调节视网膜突触前末端的GABAC受体介导的恒定电流。

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摘要

At the axon terminal of goldfish retinal bipolar cells, GABAC receptors have been shown to mediate inhibitory reciprocal synaptic currents. Here, we demonstrate a novel standing GABAergic current mediated exclusively by GABAC receptors. Selective inhibition of GAT-1 GABA transporters on amacrine cells increases this tonic current and reveals a specific functional coupling between GAT-1 transporters and GABAC receptors. We propose that this GABAC receptor-mediated standing current serves to regulate synaptic gain by shunting depolarizing potentials that can produce Ca2+-dependent action potentials at the bipolar cell terminal. Furthermore, we find that the amount of GABAC receptor-mediated reciprocal feedback between bipolar cell terminals and amacrine cells is greatly increased when GAT-1 transporters are specifically blocked by NO-711 (1-[2-[[(diphenylmethylene)imino]oxy]ethyl]-1,2,5,6-tetrahydro-3-pyridinecarboxylic acid hydrochloride). The involvement of GAT-1 transporters in regulating this standing (or tonic) GABAC current implicates them in a novel role as major determinants of presynaptic excitability.
机译:在金鱼视网膜双极细胞的轴突末端,GABAC受体已显示出介导抑制性互易突触电流。在这里,我们展示了仅由GABAC受体介导的新型站立GABA能电流。 GAT-1 GABA转运蛋白对无长突细胞的选择性抑制增加了这种滋补电流,并揭示了GAT-1转运蛋白与GABAC受体之间的特定功能偶联。我们认为,该GABAC受体介导的站立电流通过分流去极化电位来调节突触增益,该去极化电位可以在双极细胞末端产生Ca 2 + 依赖性动作电位。此外,我们发现,当GAT-1转运蛋白被NO-711(1- [2-[[[((二苯基亚甲基)亚氨基]氧基)特异性阻断时,GABAC受体介导的双极细胞末端和无长突细胞之间的相互反馈量大大增加。 [乙基] -1,2,5,6-四氢-3-吡啶羧酸盐酸盐)。 GAT-1转运蛋白参与调节这种站立的(或补品的)GABAC电流,使它们具有作为突触前兴奋性的主要决定因素的新作用。

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