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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >(3)H)(2S,4R)-4-Methylglutamate: a novel ligand for the characterization of glutamate transporters.
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(3)H)(2S,4R)-4-Methylglutamate: a novel ligand for the characterization of glutamate transporters.

机译:(3)H)(2S,4R)-4-甲基谷氨酸:用于表征谷氨酸转运蛋白的新型配体。

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摘要

[(3)H](2S,4R)-4-Methylglutamate ([(3)H]4MG), used previously as a ligand for low-affinity kainate receptors, was employed to establish a binding assay for glutamate transporters (GluTs), as 4MG has also been shown to have affinity for the glial GluTs, GLT1 and GLAST. In rat brain membrane homogenates in the presence of Na(+) ions at 4 degrees C, specific binding of [(3)H]4MG was rapid and saturable (t(1/2) approximately 15 min), representing > 90% of total binding. Dissociation of [(3)H]4MG occurred in a biphasic manner, however, saturation studies and Scatchard analysis indicated a single site of binding (n(H) = 0.85) and a K(d) of 6.2 +/- 0.8 microM with a B(max) of 111.8 +/- 23.8 pmol/mg protein. Specific binding of [(3)H]4MG was Na(+)-dependent and inhibited by K(+) and HCO(3-). Pharmacological inhibition with compounds acting at GluTs revealed that Glu, D- and L-aspartate, L-serine-O-sulfate and Ltrans-pyrrolidine-2,4-dicarboxylate fully displaced specific binding. Drugs having preferential affinity for GLT1, kainate, dihydrokainate and Lthreo-3-methylglutamate, all inhibited approximately 40% of specific binding. The inhibition pattern of L-serine-O-sulfate in the presence of a saturating concentration of dihydrokainate was suggestive of [(3)H]4MG also labelling GLAST. 6-Cyano-7-nitroquinoxaline, a kainate receptor antagonist, and a range of Glu receptor agonists and antagonists failed to significantly inhibit [(3)H]4MG binding. The pharmacological profile of binding of [(3)H]4MG resembled that found for [(3)H]D-aspartate, a ligand specific for GluTs, reinforcing the hypothesis that [(3)H]4MG was labelling GluTs in this assay. Together, these data illustrate the development of an efficient, economic binding assay that is suitable for the characterization of different subtypes of GLuTs.
机译:[(3)H](2S,4R)-4-甲基谷氨酸([[3)H] 4MG)先前被用作低亲和力海藻酸酯受体的配体,用于建立谷氨酸转运蛋白(GluTs)的结合测定,因为4MG还被证明对神经胶质GluT,GLT1和GLAST具有亲和力。在4℃下存在Na(+)离子的大鼠脑膜匀浆中,[(3H)] 4MG的特异性结合迅速且可饱和(t(1/2)约15分钟),占> 90%完全绑定。 [(3)H] 4MG的解离是双相的,但是,饱和度研究和Scatchard分析表明,单个结合位点(n(H)= 0.85)和K(d)为6.2 +/- 0.8 microM,与B(max)为111.8 +/- 23.8 pmol / mg蛋白质。 [(3)H] 4MG的特异性结合是Na(+)依赖性的,并被K(+)和HCO(3-)抑制。用作用于GluTs的化合物进行药理学抑制显示,Glu,D-和L-天冬氨酸,L-丝氨酸-O-硫酸盐和Ltrans-吡咯烷-2,4-二羧酸盐完全取代了特异性结合。对GLT1,海藻酸盐,二氢海藻酸盐和Lthreo-3-甲基谷氨酸具有优先亲和力的药物,均抑制约40%的特异性结合。在饱和浓度的二氢海藻酸酯存在下,L-丝氨酸-O-硫酸盐的抑制模式表明[(3)H] 4MG也标记了GLAST。 6-Cyano-7-nitroquinoxaline,一种海藻酸酯受体拮抗剂,以及一系列的Glu受体激动剂和拮抗剂未能显着抑制[(3)H] 4MG的结合。结合[(3)H] 4MG的药理学特征类似于针对[(3)H] D-天门冬氨酸(一种对GluTs特异的配体)的发现,从而加强了[(3)H] 4MG在此测定法中标记GluTs的假设。 。这些数据共同说明了一种高效,经济的结合测定方法的发展,该测定方法适用于表征GLuTs不同亚型。

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