首页> 外文期刊>Cellular and Molecular Neurobiology >Dynamic Gradient of Glutamate Across the Membrane: Glutamate/Aspartate-Induced Changes in the Ambient Level of l-[C-14]glutamate and d-[H-3]aspartate in Rat Brain Nerve Terminals
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Dynamic Gradient of Glutamate Across the Membrane: Glutamate/Aspartate-Induced Changes in the Ambient Level of l-[C-14]glutamate and d-[H-3]aspartate in Rat Brain Nerve Terminals

机译:谷氨酸在整个膜上的动态梯度:谷氨酸/天冬氨酸诱导的大鼠脑神经末梢中l- [C-14]谷氨酸和d- [H-3]天冬氨酸的环境水平变化

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Extracellular/intracellular l-[C-14]glutamate exchange and conservativeness of the extracellular level of l-[C-14]glutamate was analyzed in isolated rat brain nerve terminals. l-Glutamate-, dl-threo-beta-hydroxyaspartate (dl-THA)-, and d-aspartate-induced increase in the ambient level of l-[C-14]glutamate or d-[H-3]aspartate was evaluated comparatively. 100 mu M "cold" nonradiolabeled l-glutamate, dl-THA, d-aspartate extruded a quarter of radioactivity from l-[C-14]glutamate-preloaded synaptosomes for 6 min. The similar results were obtained with l-glutamate-evoked extracellular/intracellular redistribution of d-[H-3]aspartate. Contribution of presynaptic glutamate receptors to an increase in the extracellular l-[C-14]glutamate level was evaluated using receptor agonists NMDA, AMPA, and kainate (100 mu M), and it consisted of less than 5 % of total accumulated label. The existence of the efficient extracellular/intracellular glutamate exchange, and so dynamic glutamate gradient across the plasma membrane of nerve terminals was demonstrated. A two-substrate kinetic algorithm that included transporter reversal was considered. The extracellular level of l-[C-14]glutamate and d-[H-3]aspartate in nerve terminals depended on the amount of exogenous substrates of glutamate transporter available. Taking into account that l-glutamate, dl-THA, and d-aspartate are the substrates of glutamate transporters, and also the similarity in their effectiveness in the establishment of new extracellular level of the neurotransmitters, the central role of glutamate transporters in permanent glutamate turnover in nerve terminals was demonstrated.
机译:在分离的大鼠脑神经末梢中分析了细胞外/细胞内1- [C-14]谷氨酸的交换和细胞外1--C-14谷氨酸水平的保守性。评估了l-谷氨酸,dl-苏-β-羟基天冬氨酸(dl-THA)和d-天门冬氨酸引起的1- [C-14]谷氨酸或d- [H-3]天冬氨酸水平的升高比较。 100μM“冷”非放射性标记的谷氨酸,dl-THA和d-天冬氨酸从l- [C-14]谷氨酸预装的突触体中挤出四分之一的放射性,持续6分钟。用L-谷氨酸引起的d- [H-3]天冬氨酸的细胞外/细胞内再分布获得了相似的结果。使用受体激动剂NMDA,AMPA和海藻酸盐(100μM)评估突触前谷氨酸受体对细胞外1- [C-14]谷氨酸水平增加的贡献,其含量不到总累积标记的5%。证明了有效的细胞外/细胞内谷氨酸交换的存在,因此证明了神经末梢质膜上的动态谷氨酸梯度。考虑了包括转运蛋白逆转的两基质动力学算法。神经末梢中1- [C-14]谷氨酸和d- [H-3]天冬氨酸的细胞外水平取决于可用的谷氨酸转运蛋白的外源底物的量。考虑到l-谷氨酸,dl-THA和d-天门冬氨酸是谷氨酸转运蛋白的底物,以及它们在建立新的神经递质水平上的有效性相似性,谷氨酸转运蛋白在永久性谷氨酸中的核心作用证明了神经末梢的翻转。

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