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从金鱼视网膜分离出的ON型双极细胞释放内源性兴奋性氨基酸。

Release of endogenous excitatory amino acids from ON-type bipolar cells isolated from the goldfish retina.

作者信息

Tachibana M, Okada T

机构信息

Department of Psychology, Faculty of Letters, University of Tokyo, Japan.

出版信息

J Neurosci. 1991 Jul;11(7):2199-208. doi: 10.1523/JNEUROSCI.11-07-02199.1991.

Abstract

Excitatory amino acids are presumed to be the transmitter of retinal bipolar cells. However, one of the essential criteria for the identification of the transmitter, its release from the cells upon depolarization, has not been demonstrated. This article examines the release of endogenous excitatory amino acids from bipolar cells and correlates this release with the influx of Ca2+. Bipolar cells with a large, bulblike axon terminal (ON-type cells with mixed inputs from rods and cones) were enzymatically isolated from the goldfish retina. Horizontal cells dissociated from the catfish retina were used as a probe of excitatory amino acids, because these cells can detect submicromolar concentrations of L-glutamate with high selectivity. An isolated bipolar cell was closely apposed to a dissociated horizontal cell, and each cell was voltage clamped by a patch pipette in the whole-cell clamp configuration. When the bipolar cell was depolarized from -60 mV to a potential more positive than -40 mV using a 500-msec voltage pulse, an outward current (greater than 20 pA) was recorded from the apposed horizontal cell, which was maintained at +40 mV. The reversal potential of the current induced by the substance released from bipolar cells (Irs) was close to 0 mV and was almost identical to the responses evoked with ionophoretically applied L-glutamate. Both reversal potentials were shifted to the same, more negative value when the external Na+ was replaced with choline. Furthermore, the Irs was suppressed reversibly by the application of kynurenic acid, a glutamate antagonist. When the Ca current (ICa) of the bipolar cell was blocked by Cd2+, the Irs also disappeared. The peak amplitude of Irs was closely related to that of the ICa. We conclude that mixed rod/cone ON-type bipolar cells of the goldfish retina release an endogenous excitatory amino acid or a closely related compound in a Ca(2+)-dependent manner.

摘要

兴奋性氨基酸被认为是视网膜双极细胞的神经递质。然而,确定神经递质的一项基本标准,即其在去极化时从细胞中释放,尚未得到证实。本文研究了双极细胞内源性兴奋性氨基酸的释放,并将这种释放与Ca2+内流相关联。从金鱼视网膜中酶解分离出具有大的、球状轴突终末的双极细胞(来自视杆和视锥的混合输入的ON型细胞)。从鲶鱼视网膜分离出的水平细胞用作兴奋性氨基酸的探针,因为这些细胞能够以高选择性检测亚微摩尔浓度的L-谷氨酸。一个分离的双极细胞与一个解离的水平细胞紧密相邻,并且每个细胞通过膜片吸管在全细胞钳制配置下进行电压钳制。当使用500毫秒的电压脉冲将双极细胞从-60 mV去极化到比-40 mV更正的电位时,从相邻的保持在+40 mV 的水平细胞中记录到一个外向电流(大于20 pA)。双极细胞释放的物质诱导的电流(Irs)的反转电位接近0 mV,并且几乎与离子电泳施加L-谷氨酸诱发的反应相同。当外部Na+被胆碱替代时,两个反转电位都向相同的、更负的值移动。此外,Irs通过应用谷氨酸拮抗剂犬尿喹啉酸而被可逆性抑制。当双极细胞的Ca电流(ICa)被Cd2+阻断时,Irs也消失。Irs的峰值幅度与ICa的峰值幅度密切相关。我们得出结论,金鱼视网膜的混合视杆/视锥ON型双极细胞以Ca(2+)依赖性方式释放内源性兴奋性氨基酸或密切相关的化合物。

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