Hankins M W, Ruddock K H
Brain Res. 1986 Aug 20;380(2):297-302. doi: 10.1016/0006-8993(86)90225-8.
We have studied the effects of naturally occurring metabolites of tryptophan, kynurenic and quinolinic acids, on the electrophysiological responses of retinal horizontal cells in the fish (Rutilus rutilus, the roach). Quinolinic acid usually hyperpolarizes the cells and reduces their light evoked responses (S-potentials) but on occasion, it causes a slight depolarization of the membrane potential. These actions are similar to those found with N-methyl-D-aspartate (NMDA) and our results are consistent with the proposal that it acts at NMDA binding sites. Kynurenic acid (greater than or equal to mM) invariably hyperpolarizes horizontal cells to their potassium Nernst equilibrium potential and, more significantly, blocks the depolarizing actions exerted on them by excitatory amino acids, such as kainic and quisqualic acids. We show that this action persists in the presence of the synaptic blocker, cobalt chloride, and thus is not mediated by chemical synaptic activity. Kynurenic acid does not reverse depolarization of horizontal cells by dopamine or gamma-aminobutyric acid, thus its inhibitory effects are selective to the actions of excitatory amino acids. Neither xanthurenic acid, a close structural analogue of kynurenic acid, nor quinolinic acid are effective in blocking depolarizations by excitatory amino acids.
我们研究了色氨酸的天然代谢产物犬尿烯酸和喹啉酸对鱼类(赤睛鱼)视网膜水平细胞电生理反应的影响。喹啉酸通常会使细胞超极化,并降低其光诱发反应(S电位),但偶尔也会导致膜电位轻微去极化。这些作用与N-甲基-D-天冬氨酸(NMDA)的作用相似,我们的结果与它作用于NMDA结合位点的提议一致。犬尿烯酸(大于或等于毫摩尔)总是使水平细胞超极化至其钾能斯特平衡电位,更重要的是,它能阻断兴奋性氨基酸(如 kainic 酸和 quisqualic 酸)对它们施加的去极化作用。我们发现,在存在突触阻断剂氯化钴的情况下,这种作用仍然存在,因此它不是由化学突触活动介导的。犬尿烯酸不会逆转多巴胺或γ-氨基丁酸引起的水平细胞去极化,因此其抑制作用对兴奋性氨基酸的作用具有选择性。犬尿烯酸的结构类似物黄尿酸和喹啉酸都不能有效阻断兴奋性氨基酸引起的去极化。