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关于去极化刺激分离突触体中色氨酸外流机制的研究。

Studies on the mechanism by which tryptophan efflux from isolated synaptosomes is stimulated by depolarization.

作者信息

Collard K J, Wilkinson L S, Lewis D J

机构信息

Department of Physiology, University College, Cardiff.

出版信息

Br J Pharmacol. 1988 Feb;93(2):341-8. doi: 10.1111/j.1476-5381.1988.tb11440.x.

Abstract
  1. The efflux and influx of tryptophan across the synaptosomal plasma membrane has been studied under a variety of experimental conditions, in order to examine the mechanism by which depolarization enhances the efflux of tryptophan from superfused synaptosomes. 2. Efflux of [3H]-tryptophan from preloaded superfused synaptosomes was found to be enhanced by K+ depolarization in a Ca2+ and dose-dependent manner. In contrast, [3H]-phenylalanine efflux was only poorly stimulated by depolarization and only by very high concentrations of K+. 3. Tryptophan efflux was also enhanced by decreasing the extracellular Na+ concentration, but this effect was not dependent on extracellular Ca2+. 4. Influx of [3H]-tryptophan into synaptosomes was stimulated by extracellular Na+ removal, but the uptake of [3H]-phenylalanine was unaffected by this procedure. 5. Both the induced influx and efflux of tryptophan observed under these experimental conditions was inhibited by immobilizing the plasma membrane carrier with parachlorophenylalanine. This implied that both the enhanced influx and efflux arose as a consequence of the activation of the membrane tryptophan carrier, the direction of the observed effect being dependent upon the manner in which the experiments were conducted. 6. The relationship between depolarization, the activation of the membrane tryptophan carrier and the significance of this to the in vivo situation is discussed.
摘要
  1. 在多种实验条件下研究了色氨酸跨突触体细胞膜的流出和流入,以检验去极化增强色氨酸从灌流突触体流出的机制。2. 发现预加载的灌流突触体中[3H] - 色氨酸的流出在Ca2+存在下且呈剂量依赖性地被K+去极化增强。相比之下,[3H] - 苯丙氨酸的流出仅在去极化且仅在非常高浓度的K+作用下受到微弱刺激。3. 降低细胞外Na+浓度也增强了色氨酸的流出,但这种效应不依赖于细胞外Ca2+。4. 细胞外Na+去除刺激了[3H] - 色氨酸流入突触体,但[3H] - 苯丙氨酸的摄取不受此操作影响。5. 在这些实验条件下观察到的色氨酸诱导的流入和流出均被对氯苯丙氨酸固定质膜载体所抑制。这意味着增强的流入和流出都是膜色氨酸载体激活的结果,观察到的效应方向取决于实验进行的方式。6. 讨论了去极化、膜色氨酸载体的激活之间的关系以及这对体内情况的意义。

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