Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences , University of Copenhagen , 2100 Copenhagen , Denmark.
Institute of Organic Chemistry and Biochemistry , Czech Academy of Sciences , Flemingovo nam 542/2 , 16610 Prague 6 , Czech Republic.
ACS Chem Neurosci. 2018 Mar 21;9(3):545-554. doi: 10.1021/acschemneuro.7b00351. Epub 2017 Nov 22.
The betaine/γ-aminobutyric acid (GABA) transporter 1 (BGT1) is one of the four GABA transporters (GATs) involved in the termination of GABAergic neurotransmission. Although suggested to be implicated in seizure management, the exact functional importance of BGT1 in the brain is still elusive. This is partly owing to the lack of potent and selective pharmacological tool compounds that can be used to probe its function. We previously reported the identification of 2-amino-1,4,5,6-tetrahydropyrimidine-5-carboxylic acid (ATPCA), a selective substrate for BGT1 over GAT1/GAT3, but also an agonist for GABA receptors. With the aim of providing new functional insight into BGT1, we here present the synthesis and pharmacological characterization of the tritiated analogue, [H]ATPCA. Using traditional uptake assays at recombinant transporters expressed in cell lines, [H]ATPCA displayed a striking selectivity for BGT1 among the four GATs ( K and V values of 21 μM and 3.6 nmol ATPCA/(min × mg protein), respectively), but was also found to be a substrate for the creatine transporter (CreaT). In experiments with mouse cortical cell cultures, we observed a Na-dependent [H]ATPCA uptake in neurons, but not in astrocytes. The neuronal uptake could be inhibited by GABA, ATPCA, and a noncompetitive BGT1-selective inhibitor, indicating functional BGT1 in neurons. In conclusion, we report [H]ATPCA as a novel radioactive substrate for both BGT1 and CreaT. The dual activity of the radioligand makes it most suitable for use in recombinant studies.
甜菜碱/γ-氨基丁酸(GABA)转运蛋白 1(BGT1)是参与 GABA 能神经传递终止的四种 GABA 转运体(GATs)之一。尽管有人认为它与癫痫发作的管理有关,但 BGT1 在大脑中的确切功能重要性仍不清楚。这部分是由于缺乏能够用于探测其功能的有效和选择性的药理学工具化合物。我们之前报道了 2-氨基-1,4,5,6-四氢嘧啶-5-羧酸(ATPCA)的鉴定,它是 BGT1 的选择性底物,优先于 GAT1/GAT3,但也是 GABA 受体的激动剂。为了提供对 BGT1 的新的功能见解,我们在此提出了氚标记类似物 [H]ATPCA 的合成和药理学表征。在细胞系中表达的重组转运体的传统摄取测定中,[H]ATPCA 对四种 GATs (K 和 V 值分别为 21 μM 和 3.6 nmol ATPCA/(min×mg 蛋白))表现出惊人的选择性,但也被发现是肌酸转运体(CreaT)的底物。在小鼠皮质细胞培养物的实验中,我们观察到神经元中存在 Na 依赖性 [H]ATPCA 摄取,但在星形胶质细胞中不存在。GABA、ATPCA 和非竞争性 BGT1 选择性抑制剂可抑制神经元中的摄取,表明神经元中存在功能性 BGT1。总之,我们报道 [H]ATPCA 是 BGT1 和 CreaT 的新型放射性底物。放射性配体的双重活性使其最适合用于重组研究。