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N-甲基-D-天冬氨酸在体内诱发的牛磺酸和磷酸乙醇胺释放:释放位点

N-Methylaspartate-evoked liberation of taurine and phosphoethanolamine in vivo: site of release.

作者信息

Lehmann A, Lazarewicz J W, Zeise M

出版信息

J Neurochem. 1985 Oct;45(4):1172-7. doi: 10.1111/j.1471-4159.1985.tb05538.x.

Abstract

The effect of N-methyl-D,L-aspartic acid (NMA) on extracellular amino acids was studied in the rabbit hippocampus with the brain dialysis technique. Administration of 0.5 or 5 mM NMA caused a concentration-dependent liberation of taurine and phosphoethanolamine (PEA). Taurine increased by 1,200% and PEA by 2,400% during perfusion with 5 mM NMA whereas most other amino acids rose by 20-100%. The effect of NMA appeared to be receptor-mediated, as coperfusion with D-2-amino-5-phosphonovaleric acid curtailed the NMA response by some 90%. The NMA-stimulated release of taurine and PEA was suppressed when Ca2+ was omitted and further inhibited when Co2+ was included in the perfusion medium. The effect of NMA was mimicked by the endogenous NMA agonist quinolinic acid and the partial NMA agonist D,L-cis-2,3-piperidine dicarboxylic acid. Although the NMA-evoked release of taurine and PEA was Ca2+-dependent in vivo, NMA had no effect on Ca2+ accumulation in hippocampal synaptosomes. The previously reported NMA-induced activation of dendritic Ca2+ spikes and the lack of effect on synaptosomal Ca2+ uptake suggest that taurine and PEA are released from sites other than nerve terminals, possibly from dendrosomatic sites. This notion was strengthened by the absence of an effect of NMA on the efflux of radiolabelled taurine from hippocampal synaptosomes. In contrast, high K+ stimulated synaptosomal uptake of Ca2+ and release of taurine.

摘要

采用脑透析技术研究了N-甲基-D,L-天冬氨酸(NMA)对兔海马细胞外氨基酸的影响。给予0.5或5 mM的NMA会引起牛磺酸和磷酸乙醇胺(PEA)浓度依赖性释放。在用5 mM NMA灌注期间,牛磺酸增加了1200%,PEA增加了2400%,而大多数其他氨基酸增加了20%-100%。NMA的作用似乎是由受体介导的,因为与D-2-氨基-5-磷酸戊酸共同灌注可使NMA反应减少约90%。当灌注介质中省略Ca2+时,NMA刺激的牛磺酸和PEA释放受到抑制,而当加入Co2+时进一步受到抑制。内源性NMA激动剂喹啉酸和部分NMA激动剂D,L-顺式-2,3-哌啶二羧酸可模拟NMA的作用。尽管NMA诱发的牛磺酸和PEA释放在体内依赖于Ca2+,但NMA对海马突触体中Ca2+的积累没有影响。先前报道的NMA诱导的树突状Ca2+尖峰激活以及对突触体Ca2+摄取缺乏影响表明,牛磺酸和PEA是从神经末梢以外的部位释放的,可能是从树突体部位释放的。海马突触体中放射性标记牛磺酸外流不受NMA影响,这一观点得到了进一步证实。相反,高K+刺激了突触体对Ca2+的摄取和牛磺酸的释放。

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