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Glutamate modulation of GABA transport in retinal horizontal cells of the skate

机译:溜冰鞋视网膜水平细胞中GABA转运的谷氨酸调节

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摘要

Transport of the amino acid GABA into neurons and glia plays a key role in regulating the effects of GABA in the vertebrate retina. We have examined the modulation of GABA-elicited transport currents of retinal horizontal cells by glutamate, the likely neurotransmitter of vertebrate photoreceptors. Enzymatically isolated external horizontal cells of skate were examined using whole-cell voltage-clamp techniques. GABA (1 mm) elicited an inward current that was completely suppressed by the GABA transport inhibitors tiagabine (10 μm) and SKF89976-A (100 μm), but was unaffected by 100 μm picrotoxin. Prior application of 100 μm glutamate significantly reduced the GABA-elicited current. Glutamate depressed the GABA dose-response curve without shifting the curve laterally or altering the voltage dependence of the current. The ionotropic glutamate receptor agonists kainate and AMPA also reduced the GABA-elicited current, and the effects of glutamate and kainate were abolished by the ionotropic glutamate receptor antagonist 6-cyano-7-nitroquinoxaline. NMDA neither elicited a current nor modified the GABA-induced current, and metabotropic glutamate analogues were also without effect. Inhibition of the GABA-elicited current by glutamate and kainate was reduced when extracellular calcium was removed and when recording pipettes contained high concentrations of the calcium chelator BAPTA. Caffeine (5 mm) and thapsigargin (2 nm), agents known to alter intracellular calcium levels, also reduced the GABA-elicited current, but increases in calcium induced by depolarization alone did not. Our data suggest that glutamate regulates GABA transport in retinal horizontal cells through a calcium-dependent process, and imply a close physical relationship between calcium-permeable glutamate receptors and GABA transporters in these cells.
机译:氨基酸GABA进入神经元和神经胶质的运输在调节GABA在脊椎动物视网膜中的作用中起关键作用。我们已经研究了谷氨酸(脊椎动物感光细胞的可能神经递质)对GABA引起的视网膜水平细胞运输电流的调节。使用全细胞电压钳技术检查通过酶促分离的溜冰鞋外部水平细胞。 GABA(1毫米)引起内向电流,该内向电流完全被GABA转运抑制剂替加宾(10μm)和SKF89976-A(100μm)抑制,但不受100μm微小毒素的影响。事先施加100μm谷氨酸可显着降低GABA引起的电流。谷氨酸降低了GABA剂量反应曲线,而没有横向移动该曲线或改变电流的电压依赖性。离子型谷氨酸受体激动剂海藻酸盐和AMPA也降低了GABA引发的电流,并且离子型谷氨酸受体拮抗剂6-氰基-7-硝基喹喔啉消除了谷氨酸和海藻酸盐的作用。 NMDA既不引起电流也不改变GABA诱导的电流,并且代谢型谷氨酸类似物也没有作用。当细胞外钙被去除并且记录移液管中含有高浓度的钙螯合剂BAPTA时,谷氨酸和海藻酸盐对GABA诱导的电流的抑制作用会降低。咖啡因(5毫米)和毒胡萝卜素(2纳米),已知会改变细胞内钙水平的物质,也降低了GABA引起的电流,但单独通过去极化诱导的钙增加却没有。我们的数据表明,谷氨酸通过钙依赖性过程调节视网膜水平细胞中的GABA转运,并暗示这些细胞中可渗透钙的谷氨酸受体与GABA转运蛋白之间存在密切的物理关系。

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