Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, Universitetsparken 2, 2100, Copenhagen Ø, Denmark.
Translational DMPK, H. Lundbeck A/S, Ottiliavej 9, 2500, Valby, Denmark.
Sci Rep. 2020 Jun 22;10(1):10078. doi: 10.1038/s41598-020-66821-0.
Brain GABA receptors are ionotropic receptors belonging to the class of Cys-loop receptors and are important drug targets for the treatment of anxiety and sleep disorders. By screening a compound library (2,112 compounds) at recombinant human αβδ GABA receptors heterologously expressed in a HEK cell line, we identified a scaffold of spirocyclic compounds with nanomolar antagonist activity at GABA receptors. The initial screening hit 2027 (IC of 1.03 μM) was used for analogue search resulting in 018 (IC of 0.088 μM). 018 was most potent at α-subunit containing receptors, thus showing preference for forebrain-expressed extrasynaptic receptors. Schild analysis of 018 at recombinant human αβδ receptors and displacement of [H]muscimol binding in rat cortical homogenate independently confirmed a competitive profile. The antagonist profile of 018 was further validated by whole-cell patch-clamp electrophysiology, where kinetic studies revealed a slow dissociation rate and a shallow hill slope was observed. Membrane permeability studies showed that 2027 and 018 do not cross membranes, thus making the compounds less attractive for studying central GABA receptors effects, but conversely more attractive as tool compounds in relation to emerging peripheral GABA receptor-mediated effects of GABA e.g. in the immune system.
脑 GABA 受体是离子型受体,属于 Cys 环受体家族,是治疗焦虑和睡眠障碍的重要药物靶点。通过在异源表达于 HEK 细胞系的重组人 αβδGABA 受体上筛选化合物文库(2112 种化合物),我们鉴定出了一类具有纳摩尔拮抗剂活性的螺环化合物骨架 GABA 受体。初始筛选的命中化合物 2027(IC50 为 1.03 μM)用于类似物搜索,得到 018(IC50 为 0.088 μM)。018 对包含 α 亚基的受体最有效,因此显示出对前脑表达的 extrasynaptic 受体的偏好。018 在重组人 αβδ 受体上的 Schild 分析和大鼠皮质匀浆中 [H]muscimol 结合的置换独立证实了其竞争性特征。018 的拮抗剂特征进一步通过全细胞膜片钳电生理学得到验证,其中动力学研究显示出缓慢的解离速率和较浅的希尔斜率。膜通透性研究表明,2027 和 018 不能穿过细胞膜,因此这些化合物不太适合研究中枢 GABA 受体的作用,但相反,它们作为与 GABA 介导的外周 GABA 受体的新兴作用相关的工具化合物更具吸引力,例如在免疫系统中。