The University of Texas at Austin, Waggoner Center for Alcohol and Addiction Research, Austin, TX, 78712, USA.
Department of Neuroscience, The Scripps Research Institute, La Jolla, CA, 92037, USA.
Sci Rep. 2017 Jul 24;7(1):6230. doi: 10.1038/s41598-017-05966-x.
Aminoquinoline derivatives were evaluated against a panel of receptors/channels/transporters in radioligand binding experiments. One of these derivatives (DCUK-OEt) displayed micromolar affinity for brain γ-aminobutyric acid type A (GABA) receptors. DCUK-OEt was shown to be a positive allosteric modulator (PAM) of GABA currents with α1β2γ2, α1β3γ2, α5β3γ2 and α1β3δ GABA receptors, while having no significant PAM effect on αβ receptors or α1β1γ2, α1β2γ1, α4β3γ2 or α4β3δ receptors. DCUK-OEt modulation of α1β2γ2 GABA receptors was not blocked by flumazenil. The subunit requirements for DCUK-OEt actions distinguished DCUK-OEt from other currently known modulators of GABA function (e.g., anesthetics, neurosteroids or ethanol). Simulated docking of DCUK-OEt at the GABA receptor suggested that its binding site may be at the α + β- subunit interface. In slices of the central amygdala, DCUK-OEt acted primarily on extrasynaptic GABA receptors containing the α1 subunit and generated increases in extrasynaptic "tonic" current with no significant effect on phasic responses to GABA. DCUK-OEt is a novel chemical structure acting as a PAM at particular GABA receptors. Given that neurons in the central amygdala responding to DCUK-OEt were recently identified as relevant for alcohol dependence, DCUK-OEt should be further evaluated for the treatment of alcoholism.
氨基喹啉衍生物在放射性配体结合实验中针对一系列受体/通道/转运体进行了评估。其中一种衍生物 (DCUK-OEt) 对大脑 γ-氨基丁酸 A 型 (GABA) 受体显示出微摩尔亲和力。研究表明,DCUK-OEt 是 GABA 电流的正变构调节剂 (PAM),对 α1β2γ2、α1β3γ2、α5β3γ2 和 α1β3δ GABA 受体具有作用,而对 αβ 受体或 α1β1γ2、α1β2γ1、α4β3γ2 或 α4β3δ 受体则没有显著的 PAM 作用。DCUK-OEt 对 α1β2γ2 GABA 受体的调制不受氟马西尼阻断。DCUK-OEt 作用的亚基要求将其与其他目前已知的 GABA 功能调节剂(例如,麻醉剂、神经甾体或乙醇)区分开来。DCUK-OEt 在 GABA 受体上的模拟对接表明,其结合位点可能位于 α + β-亚基界面。在中央杏仁核切片中,DCUK-OEt 主要作用于含有 α1 亚基的突触外 GABA 受体,并增加突触外“紧张”电流,对 GABA 的相电流反应没有显著影响。DCUK-OEt 是一种新型化学结构,作为特定 GABA 受体的 PAM 发挥作用。鉴于最近发现中央杏仁核中对 DCUK-OEt 有反应的神经元与酒精依赖有关,因此应该进一步评估 DCUK-OEt 治疗酒精中毒的效果。