首页> 外文期刊>Journal of General Physiology >Modulation of Extracellular Proton Fluxes from Retinal Horizontal Cells of the Catfish by Depolarization and Glutamate
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Modulation of Extracellular Proton Fluxes from Retinal Horizontal Cells of the Catfish by Depolarization and Glutamate

机译:通过去极化和谷氨酸调节from鱼视网膜水平细胞的细胞外质子通量

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Self-referencing H~+-selective microelectrodes were used to measure extracellular proton fluxes from cone-driven horizontal cells isolated from the retina of the catfish {Ictalurus punctatus). The neurotransmitter glutamate induced an alkalinization of the area adjacent to the external face of the cell membrane. The effect of glutamate occurred regardless of whether the external solution was buffered with 1 mM HEPES, 3 mM phosphate, or 24 mM bicarbonate. The AMPA/kainate receptor agonist kainate and the NMDA receptor agonist iV-methyl-D-aspartate both mimicked the effect of glutamate. The effect of kainate on proton flux was inhibited by the AMPA/kainate receptor blocker CNQX, and the effect of NMDA was abolished by the NMDA receptor antagonist DAP-5. Metabo-tropic glutamate receptor agonists produced no alteration in proton fluxes from horizontal cells. Depolarization of cells either by increasing extracellular potassium or directly by voltage clamp also produced an alkalinization adjacent to the cell membrane. The effects of depolarization on proton flux were blocked by 10 μM nifedipine, an inhibitor of L-type calcium channels. The plasmalemma Ca~(2+)/H~+ ATPase(PMCA) blocker 5(6)-carboxyeosin also significantly reduced proton flux modulation by glutamate. Our results are consistent with the hypothesis that glutamate-induced extracellular alkalinizations arise from activation of the PMCA pump following increased intra-cellular calcium entry into cells. This process might help to relieve suppression of photoreceptor neurotransmitter release that results from exocytosed protons from photoreceptor synaptic terminals. Our findings argue strongly against the hypothesis that protons released by horizontal cells act as the inhibitory feedback neurotransmitter that creates the surround portion of the receptive fields of retinal neurons.
机译:自参照H〜+选择性微电极用于测量从from鱼(Ictalurus punctatus)视网膜分离的视锥细胞驱动的水平细胞中的细胞外质子通量。谷氨酸神经递质诱导邻近细胞膜外表面的区域发生碱化。无论外部溶液是用1 mM HEPES,3 mM磷酸盐还是24 mM碳酸氢盐缓冲,均会产生谷氨酸的影响。 AMPA /海藻酸酯受体激动剂海藻酸酯和NMDA受体激动剂iV-甲基-D-天冬氨酸都模仿了谷氨酸的作用。海藻酸酯对质子通量的作用被AMPA /海藻酸酯受体阻滞剂CNQX抑制,而NMDA的作用被NMDA受体拮抗剂DAP-5消除。代谢型谷氨酸受体激动剂不会改变水平细胞的质子通量。通过增加细胞外钾或直接通过电压钳使细胞去极化也会在细胞膜附近产生碱化作用。去极化对质子通量的影响被L型钙通道抑制剂10μM硝苯地平所阻断。质膜Ca〜(2 +)/ H〜+ ATPase(PMCA)阻断剂5(6)-羧曙红也显着降低了谷氨酸对质子通量的调节作用。我们的结果与以下假设相符:谷氨酸诱导的细胞外碱化是由于细胞内钙进入细胞内增加后PMCA泵的活化而引起的。这个过程可能有助于减轻对光感受器神经递质释放的抑制,该释放是由于来自光感受器突触末端的胞质子质子释放所致。我们的发现强烈反对以下假设:水平细胞释放的质子起抑制性反馈神经递质的作用,从而形成视网膜神经元感受野的周围部分。

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