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从正常和攀爬纤维剥夺的大鼠小脑切片中释放内源性和积累的外源性氨基酸。

Release of endogenous and accumulated exogenous amino acids from slices of normal and climbing fibre-deprived rat cerebellar slices.

作者信息

Toggenburger G, Wiklund L, Henke H, Cuénod M

出版信息

J Neurochem. 1983 Dec;41(6):1606-13. doi: 10.1111/j.1471-4159.1983.tb00871.x.

Abstract

Efflux of various amino acids from slices of rat cerebellar hemispheres was determined under resting or depolarizing conditions. It was increased under high K+(50 mM) as compared to low K+ (5 mM) conditions by 1258 pmol/mg protein for aspartate, 478 for gamma-aminobutyric acid (GABA), 44,693 for glutamate, and 615 for glycine. These were significantly higher than the corresponding values obtained under low-Ca2+ (0.1 mM), high-Mg2+ (12 mM) conditions, whereas for 11 other amino acids the K+-induced efflux was similar under normal and low-Ca2+ concentrations. The K+-induced efflux of exogenously accumulated L-[3H]aspartate, D-[3H]aspartate, and L-[3H]glutamate was higher by factors of 2, 5.8, and 6.3, respectively, under normal Ca2+ conditions, as compared with low-Ca2+, high-Mg2+ conditions. After climbing fibre degeneration induced by destruction of the inferior olive with 3-acetylpyridine, release of endogenous aspartate and exogenous L-[3H]glutamate and D-[3H]aspartate was significantly reduced, by 26%, 38%, and 27%, respectively. These results support the hypothesis that climbing fibres may use aspartate or a related compound as a neurotransmitter. In rat cerebellar tissue, L-[3H]glutamate and L-[3H]aspartate differ in several aspects: (1) L-[3H]glutamate uptake was 4 times higher than that of L-[3H]aspartate; (2) fractional rate constant of K+- evoked release of L-[3H]aspartate was 7% X 2.5 min-1, and of L-[3H]glutamate 36% X 2.5 min-1; and (3) specific activity of L-[3H]glutamate in the eluate collected during K+ stimulation was 3.5 times the value in the tissue, whereas for L-[3H]aspartate, specific activities in the eluate and tissue were similar.

摘要

在静息或去极化条件下,测定了大鼠小脑半球切片中各种氨基酸的外流情况。与低钾(5 mM)条件相比,高钾(50 mM)条件下天冬氨酸的外流增加了1258 pmol/mg蛋白质,γ-氨基丁酸(GABA)增加了478,谷氨酸增加了44693,甘氨酸增加了615。这些值显著高于在低钙(0.1 mM)、高镁(12 mM)条件下获得的相应值,而对于其他11种氨基酸,正常和低钙浓度下钾诱导的外流相似。与低钙、高镁条件相比,在正常钙条件下,钾诱导的外源性积累的L-[3H]天冬氨酸、D-[3H]天冬氨酸和L-[3H]谷氨酸的外流分别高出2倍、5.8倍和6.3倍。在用3-乙酰吡啶破坏下橄榄核诱导攀缘纤维变性后,内源性天冬氨酸以及外源性L-[3H]谷氨酸和D-[3H]天冬氨酸的释放分别显著减少了26%、38%和27%。这些结果支持了攀缘纤维可能使用天冬氨酸或相关化合物作为神经递质的假说。在大鼠小脑组织中,L-[3H]谷氨酸和L-[3H]天冬氨酸在几个方面存在差异:(1)L-[3H]谷氨酸的摄取比L-[3H]天冬氨酸高4倍;(2)钾诱发的L-[3H]天冬氨酸释放的分数速率常数为7%×2.5 min-1,L-[3H]谷氨酸为36%×2.5 min-1;(3)钾刺激期间收集的洗脱液中L-[3H]谷氨酸的比活性是组织中的3.5倍,而对于L-[3H]天冬氨酸,洗脱液和组织中的比活性相似。

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