Research Center of Neurology, Moscow, Russia.
Research Center of Neurology, Moscow, Russia.
Neuropharmacology. 2019 Dec 1;160:107795. doi: 10.1016/j.neuropharm.2019.107795. Epub 2019 Sep 24.
Fenamates mefanamic and niflumic acids (MFA and NFA) induced dual potentiating and inhibitory effects on GABA currents recorded in isolated cerebellar Purkinje cells using the whole-cell patch-clamp and fast-application techniques. Regardless of the concentration, both drugs induced a pronounced prolongation of the current response. We demonstrated that the same concentration of drugs can produce both potentiating and inhibitory effects, depending on the GABA concentration, which indicates that both processes take place simultaneously and the net effect depends on the concentrations of both the agonist and fenamate. We found that the NFA-induced block is strongly voltage-dependent. The Woodhull analysis of the block suggests that NFA has two binding sites in the pore - shallow and deep. We built a homology model of the open GABAR based on the cryo-EM structure of the open α1 GlyR and applied Monte-Carlo energy minimization to optimize the ligand-receptor complexes. A systematic search for MFA/NFA binding sites in the GABAR pore revealed the existence of two sites, the location of which coincides well with predictions of the Woodhull model. In silico docking suggests that two fenamate molecules are necessary to occlude the pore. We showed that MFA, acting as a PAM, competes with an intravenous anesthetic etomidate for a common binding site. We built structural models of MFA and NFA binding at the transmembrane β(+)/α(-) intersubunit interface. We suggested a hypothesis on the molecular mechanism underlying the prolongation of the receptor lifetime in open state after MFA/NFA binding and β subunit specificity of the fenamate potentiation.
非甾体类抗炎药(如甲氯芬那酸和昔布类药物)在使用全细胞膜片钳和快速施加技术记录的分离小脑浦肯野细胞中的 GABA 电流中诱导双重增强和抑制作用。无论浓度如何,两种药物都明显延长了电流反应。我们证明,相同浓度的药物可以产生增强和抑制作用,这取决于 GABA 的浓度,这表明这两个过程同时发生,净效应取决于激动剂和非甾体类抗炎药的浓度。我们发现 NFA 诱导的阻断作用强烈依赖于电压。阻断的 Woodhull 分析表明,NFA 在孔中有两个结合位点 - 浅和深。我们基于 cryo-EM 结构的开放 α1 GlyR 构建了开放 GABAR 的同源模型,并应用 Monte-Carlo 能量最小化来优化配体 - 受体复合物。在 GABAR 孔中搜索 MFA/NFA 结合位点的系统搜索揭示了两个位点的存在,其位置与 Woodhull 模型的预测非常吻合。在计算机对接中,两个非甾体类抗炎药分子需要阻塞孔。我们表明,作为 PAM 的 MFA 与静脉麻醉药依托咪酯竞争共同的结合位点。我们构建了 MFA 和 NFA 在跨膜β(+)/α(-)亚基界面结合的结构模型。我们提出了一个假设,即在 MFA/NFA 结合后延长受体在开放状态下的寿命和β亚基特异性的非甾体类抗炎药增强的分子机制。