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首页> 外文期刊>Biochemical Pharmacology >Pharmacological characterization of human excitatory amino acid transporters EAAT1, EAAT2 and EAAT3 in a fluorescence-based membrane potential assay.
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Pharmacological characterization of human excitatory amino acid transporters EAAT1, EAAT2 and EAAT3 in a fluorescence-based membrane potential assay.

机译:在基于荧光的膜电势测定中,人兴奋性氨基酸转运蛋白EAAT1,EAAT2和EAAT3的药理学表征。

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摘要

We have expressed the human excitatory amino acid transporters EAAT1, EAAT2 and EAAT3 stably in HEK293 cells and characterized the transporters pharmacologically in a conventional [(3) H]-d-aspartate uptake assay and in a fluorescence-based membrane potential assay, the FLIPR Membrane Potential (FMP) assay. The K(m) and K(i) values obtained for 12 standard EAAT ligands at EAAT1, EAAT2 and EAAT3 in the FMP assay correlated well with the K(i) values obtained in the [(3) H]-d-aspartate assay (r(2) values of 0.92, 0.92, and 0.95, respectively). Furthermore, the pharmacological characteristics of the cell lines in the FMP assay were in good agreement with previous findings in electrophysiology studies of the transporters. The FMP assay was capable of distinguishing between substrates and non-substrate inhibitors and to discriminate between "full" and "partial" substrates at the transporters. Taking advantage of the prolific nature of the FMP assay, interactions of the EAATs with substrates and inhibitors were studied in some detail. This is the first report of a high throughput screening assay for EAATs. We propose that the assay will be of great use in future studies of the transporters. Although conventional electrophysiology set-ups might be superior in terms of studying sophisticated kinetic aspects of the uptake process, the FMP assay enables the collection of considerable amounts of highly reproducible data with relatively little labor. Furthermore, considering that the number of EAAT ligands presently available is limited, and that almost all of these are characterized by low potency and a low degree of subtype selectivity, future screening of compound libraries at the EAAT-cell lines in the FMP assay could help identify structurally and pharmacologically novel ligands for the transporters.
机译:我们已经在HEK293细胞中稳定表达了人类兴奋性氨基酸转运蛋白EAAT1,EAAT2和EAAT3,并在常规[(3)H] -d-天冬氨酸摄取测定和基于荧光的膜电位测定,FLIPR中进行了药理学表征膜电位(FMP)分析。 FMP测定中在EAAT1,EAAT2和EAAT3处的12种标准EAAT配体获得的K(m)和K(i)值与[(3 H)-d-天门冬氨酸测定法中获得的K(i)值具有很好的相关性(r(2)值分别为0.92、0.92和0.95)。此外,FMP分析中细胞系的药理特性与转运蛋白电生理研究中的先前发现非常吻合。 FMP分析能够区分底物和非底物抑制剂,并在转运蛋白上区分“完全”底物和“部分”底物。利用FMP分析的丰富性质,对EAAT与底物和抑制剂的相互作用进行了详细研究。这是针对EAAT的高通量筛选分析的第一份报告。我们建议该测定法将在转运蛋白的未来研究中大量使用。尽管就研究摄取过程的复杂动力学方面而言,传统的电生理学设置可能会更好,但是FMP分析能够以相对较少的工作量收集大量可高度重现的数据。此外,考虑到目前可用的EAAT配体的数量是有限的,并且几乎所有这些都以低效能和低亚型选择性为特征,将来在FMP分析中筛选EAAT细胞系中的化合物文库可能会有所帮助确定转运蛋白的结构和药理学新配体。

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