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天然和重组系统中苏式-3-甲基谷氨酸与兴奋性氨基酸转运体的药理学特性

Pharmacological characterization of threo-3-methylglutamic acid with excitatory amino acid transporters in native and recombinant systems.

作者信息

Eliasof S, McIlvain H B, Petroski R E, Foster A C, Dunlop J

机构信息

Neurocrine Biosciences Inc., San Diego, California, USA Wyeth Neuroscience, Wyeth-Ayerst Research, Princeton, New Jersey, USA.

出版信息

J Neurochem. 2001 Apr;77(2):550-7. doi: 10.1046/j.1471-4159.2001.00253.x.

Abstract

The glutamate analog (+/-) threo-3-methylglutamate (T3MG) has recently been reported to inhibit the EAAT2 but not EAAT1 subtype of high-affinity, Na(+)-dependent excitatory amino acid transporter (EAAT). We have examined the effects of T3MG on glutamate-elicited currents mediated by EAATs 1-4 expressed in Xenopus oocytes and on the transport of radiolabeled substrate in mammalian cell lines expressing EAATs 1-3. T3MG was found to be an inhibitor of EAAT2 and EAAT4 but a weak inhibitor of EAAT1 and EAAT3. T3MG competitively inhibited uptake of D-[(3)H]-aspartate into both cortical and cerebellar synaptosomes with a similar potency, consistent with its inhibitory activity on the cloned EAAT2 and EAAT4 subtypes. In addition, T3MG produced substrate-like currents in oocytes expressing EAAT4 but not EAAT2. However, T3MG was unable to elicit heteroexchange of preloaded D-[(3)H]-aspartate in cerebellar synaptosomes, inconsistent with the behavior of a substrate inhibitor. Finally, T3MG acts as a poor ionotropic glutamate receptor agonist in cultured hippocampal neurons: concentrations greater than 100 microM T3MG were required to elicit significant NMDA receptor-mediated currents. Thus, T3MG represents a pharmacological tool for the study of not only the predominant EAAT2 subtype but also the EAAT4 subtype highly expressed in cerebellum.

摘要

最近有报道称,谷氨酸类似物(±)苏式-3-甲基谷氨酸(T3MG)可抑制高亲和力、钠依赖性兴奋性氨基酸转运体(EAAT)的EAAT2亚型,但不抑制EAAT1亚型。我们研究了T3MG对非洲爪蟾卵母细胞中表达的EAAT1-4介导的谷氨酸诱发电流的影响,以及对表达EAAT1-3的哺乳动物细胞系中放射性标记底物转运的影响。结果发现T3MG是EAAT2和EAAT4的抑制剂,但对EAAT1和EAAT3的抑制作用较弱。T3MG以相似的效力竞争性抑制D-[(3)H]-天冬氨酸进入皮质和小脑突触体,这与其对克隆的EAAT2和EAAT4亚型的抑制活性一致。此外,T3MG在表达EAAT4而非EAAT2的卵母细胞中产生底物样电流。然而,T3MG无法在小脑突触体中引发预加载的D-[(3)H]-天冬氨酸的异源交换,这与底物抑制剂的行为不一致。最后,T3MG在培养的海马神经元中作为一种低效的离子型谷氨酸受体激动剂:需要大于100 microM的T3MG浓度才能引发显著的NMDA受体介导的电流。因此,T3MG不仅是研究主要的EAAT2亚型,也是研究在小脑中高表达的EAAT4亚型的一种药理学工具。

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