Department of Pharmaceutical Chemistry, Faculty of Pharmacy and Biotechnology, The German University in Cairo, New Cairo City, 11835 Cairo, Egypt.
School of Life and Medical Sciences, University of Hertfordshire hosted by Global Academic Foundation, New Administrative Capitol, 11865 Cairo, Egypt.
J Nat Prod. 2021 Feb 26;84(2):382-394. doi: 10.1021/acs.jnatprod.0c01030. Epub 2021 Feb 17.
Strychnine is the prototypic antagonist of glycine receptors, a family of pentameric ligand-gated ion channels. Recent high-resolution structures of homomeric glycine receptors have confirmed the presence of five orthosteric binding sites located in the extracellular subunit interfaces of the receptor complex that are targeted by strychnine. Here, we report the synthesis and extensive pharmacological evaluation of bivalent ligands composed of two strychnine pharmacophores connected by appropriate spacers optimized toward simultaneous binding to two adjacent orthosteric sites of homomeric α1 glycine receptors. In all bivalent ligands, the two strychnine units were linked through C-2 by amide spacers of various lengths ranging from 6 to 69 atoms. Characterization of the compounds in two functional assays and in a radioligand binding assay indicated that compound , with a spacer consisting of 57 atoms, may be capable of bridging the homomeric α1 GlyRs by simultaneous occupation of two adjacent strychnine-binding sites. The findings are supported by docking experiments to the crystal structure of the homomeric glycine receptor. Based on its unique binding mode, its relatively high binding affinity and antagonist potency, and its slow binding kinetics, the bivalent strychnine analogue could be a valuable tool to study the functional properties of glycine receptors.
士的宁是甘氨酸受体的典型拮抗剂,甘氨酸受体是一类五聚体配体门控离子通道。最近同源甘氨酸受体的高分辨率结构证实,受体复合物的细胞外亚基界面存在五个正位结合位点,士的宁靶向这些结合位点。在这里,我们报告了由两个士的宁药效团通过适当的间隔物连接而成的双价配体的合成和广泛的药理学评价,这些间隔物经过优化,可同时结合同型 α1 甘氨酸受体的两个相邻正位结合位点。在所有双价配体中,两个士的宁单元通过酰胺间隔物通过 C-2 连接,间隔物的长度从 6 到 69 个原子不等。在两项功能测定和放射性配体结合测定中对化合物进行了表征,结果表明,间隔物由 57 个原子组成的化合物 可能能够通过同时占据两个相邻的士的宁结合位点来桥接同型 α1 GlyRs。这些发现得到了同源甘氨酸受体晶体结构对接实验的支持。基于其独特的结合模式、相对较高的结合亲和力和拮抗剂效力以及缓慢的结合动力学,双价士的宁类似物 可能是研究甘氨酸受体功能特性的有价值工具。