Madsen Christian, Jensen Anders A, Liljefors Tommy, Kristiansen Uffe, Nielsen Birgitte, Hansen Camilla P, Larsen Mogens, Ebert Bjarke, Bang-Andersen Benny, Krogsgaard-Larsen Povl, Frølund Bente
Department of Medicinal Chemistry, Faculty of Pharmaceutical Sciences, University of Copenhagen, DK-2100 Copenhagen, Denmark.
J Med Chem. 2007 Aug 23;50(17):4147-61. doi: 10.1021/jm070447j. Epub 2007 Jul 26.
A series of ring-substituted analogues of imidazole-4-acetic acid (IAA, 4), a partial agonist at both GABAA and GABAC receptors (GABA = gamma-aminobutyric acid), have been synthesized. The synthesized compounds 8a-l have been evaluated as ligands for the alpha1beta2gamma2S GABAA receptors and the rho1 GABAC receptors using the FLIPR membrane potential (FMP) assay and by electrophysiology techniques. None of the tested compounds displayed activity at the GABAA receptors at concentrations up to 1000 microM. However, the 5-Me, 5-Ph, 5-p-Me-Ph, and 5-p-F-Ph IAA analogues, 8a,c,f,g, displayed full agonist activities at the rho1 receptors in the FMP assay (EC50 in the range 22-420 microM). Ligand-protein docking identified the Thr129 in the alpha1 subunit and the corresponding Ser168 residue in rho1 as determinants of the selectivity displayed by the 5-substituted IAA analogues. The fact that GABA, 4, and 8a displayed decreased agonist potencies at a rho1Ser168Thr mutant compared to the WT rho1 receptor strongly supported this hypothesis. However, in contrast to GABA and 4, which exhibited increased agonist potencies at a alpha1(Thr129Ser)beta2gamma2 mutant compared to WT GABAA receptor, the data obtained for 8a at the WT and mutant receptors were nonconclusive.
已合成了一系列咪唑 - 4 - 乙酸(IAA,4)的环取代类似物,IAA是一种对GABAA和GABAC受体(GABA = γ-氨基丁酸)均为部分激动剂的物质。使用荧光成像板读数器膜电位(FMP)测定法并通过电生理学技术,对合成的化合物8a - l作为α1β2γ2S GABAA受体和rho1 GABAC受体的配体进行了评估。在所测试的化合物中,浓度高达1000 microM时,没有一种在GABAA受体上表现出活性。然而,5 - 甲基、5 - 苯基、5 - 对甲基苯基和5 - 对氟苯基IAA类似物8a、c、f、g在FMP测定中对rho1受体表现出完全激动剂活性(EC50在22 - 420 microM范围内)。配体 - 蛋白质对接确定α1亚基中的Thr129和rho1中相应的Ser168残基是5 - 取代IAA类似物所表现出的选择性的决定因素。与野生型rho1受体相比,GABA、4和8a在rho1Ser168Thr突变体上激动剂效力降低这一事实有力地支持了这一假设。然而,与GABA和4不同,它们在α1(Thr129Ser)β2γ2突变体上与野生型GABAA受体相比激动剂效力增加,8a在野生型和突变体受体上获得的数据尚无定论。