Department of Technology and Biotechnology of Drugs, Jagiellonian University Medical College in Kraków, 30-688 Kraków, Poland.
Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, 2100 Copenhagen, Denmark.
Int J Mol Sci. 2022 Aug 8;23(15):8797. doi: 10.3390/ijms23158797.
Kainate receptors belong to the family of glutamate receptors ion channels, which are responsible for the majority of rapid excitatory synaptic transmission in the central nervous system. The therapeutic potential of kainate receptors is still poorly understood, which is also due to the lack of potent and subunit-selective pharmacological tools. In search of selective ligands for the GluK3 kainate receptor subtype, a series of quinoxaline-2,3-dione analogues was synthesized and pharmacologically characterized at selected recombinant ionotropic glutamate receptors. Among them, compound was found to be a competitive GluK3 antagonist with submicromolar affinity and unprecedented high binding selectivity, showing a 400-fold preference for GluK3 over other homomeric receptors GluK1, GluK2, GluK5 and GluA2. Furthermore, in functional assays performed for selected metabotropic glutamate receptor subtypes, did not show agonist or antagonist activity. The molecular determinants underlying the observed affinity profile of were analyzed using molecular docking and molecular dynamics simulations performed for individual GluK1 and GluK3 ligand-binding domains.
红藻氨酸受体属于谷氨酸受体离子通道家族,该家族负责中枢神经系统中大多数快速的兴奋性突触传递。红藻氨酸受体的治疗潜力还知之甚少,这也是由于缺乏有效和亚基选择性的药理学工具。为了寻找对 GluK3 红藻氨酸受体亚型具有选择性的配体,合成了一系列喹喔啉-2,3-二酮类似物,并在选定的重组离子型谷氨酸受体上进行了药理学表征。其中,化合物 被发现是一种竞争性 GluK3 拮抗剂,具有亚微摩尔亲和力和前所未有的高结合选择性,对 GluK3 的亲和力比对其他同源受体 GluK1、GluK2、GluK5 和 GluA2 高 400 倍。此外,在对选定代谢型谷氨酸受体亚型进行的功能测定中, 没有表现出激动剂或拮抗剂活性。使用针对单个 GluK1 和 GluK3 配体结合域进行的分子对接和分子动力学模拟,分析了观察到的 亲和力谱的分子决定因素。