Lasater E M, Lam D M
Vision Res. 1984;24(5):497-506. doi: 10.1016/0042-6989(84)90047-6.
Putative GABAergic neurons in the outer retina of the Texas channel catfish, Ictalurus punctatus, were studied using autoradiographic, biochemical and electrophysiological techniques. A red cone horizontal cell was found to accumulate exogenous GABA in the presence of red light. GABA could be released from these cells with high K+ Ringers solution. The release was only partially blocked by Co2+ and therefore may be only partially Ca2+ dependent. The red cone horizontal cells were found to contain significant activities of L-glutamic acid decarboxylase and GABA transaminase, the enzymes responsible for GABA synthesis and degradation respectively. These data suggest that catfish red cone horizontal cells are GABAergic. To substantiate this, recordings were made from photoreceptors and horizontal cells during the superfusion of the GABA blocking agents bicuculline methochloride or picrotoxin. These agents modified the cone responses in the manner specified if they were blocking the feedback pathway from horizontal cells to cones. Thus it is likely that the horizontal cells are using GABA as the transmitter in the feedback pathway. In addition, the GABA blocking agents were found to interfere with changes in horizontal cell responses which occur during light adaptation.
利用放射自显影、生化和电生理技术,对斑点叉尾鮰(Ictalurus punctatus)外视网膜中假定的γ-氨基丁酸(GABA)能神经元进行了研究。发现一个红色视锥水平细胞在红光存在下会积累外源性GABA。GABA可在高钾任氏液中从这些细胞中释放出来。这种释放仅部分被Co2+阻断,因此可能仅部分依赖Ca2+。发现红色视锥水平细胞含有大量的L-谷氨酸脱羧酶和GABA转氨酶的活性,这两种酶分别负责GABA的合成和降解。这些数据表明鲶鱼红色视锥水平细胞是GABA能的。为了证实这一点,在GABA阻断剂甲基荷包牡丹碱或印防己毒素灌流期间,对光感受器和水平细胞进行了记录。如果这些试剂阻断了从水平细胞到视锥细胞的反馈通路,它们会以特定的方式改变视锥细胞的反应。因此,水平细胞很可能在反馈通路中使用GABA作为神经递质。此外,还发现GABA阻断剂会干扰光适应期间水平细胞反应的变化。