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基于苯并[7]环壬烯-7-胺骨架的GluN2B选择性NMDA受体拮抗剂的设计、合成、药理学评价及对接研究

Design, Synthesis, Pharmacological Evaluation and Docking Studies of GluN2B-Selective NMDA Receptor Antagonists with a Benzo[7]annulen-7-amine Scaffold.

作者信息

Gawaskar Sandeep, Temme Louisa, Schreiber Julian A, Schepmann Dirk, Bonifazi Alessandro, Robaa Dina, Sippl Wolfgang, Strutz-Seebohm Nathalie, Seebohm Guiscard, Wünsch Bernhard

机构信息

Institut für Pharmazeutische und Medizinische Chemie der, Universität Münster, Corrensstraße 48, 48149, Münster, Germany.

NRW Graduate School of Chemistry, Wilhelm-Klemm-Straße 10, 48149, Münster, Germany.

出版信息

ChemMedChem. 2017 Aug 8;12(15):1212-1222. doi: 10.1002/cmdc.201700311. Epub 2017 Jul 27.

DOI:10.1002/cmdc.201700311
PMID:28749574
Abstract

Antagonists that selectively target GluN2B-subunit-containing N-methyl-d-aspartate (NMDA) receptors are of major interest for the treatment of various neurological disorders. In this study, relationships between variously substituted benzo[7]annulen-7-amines and their GluN2B affinity were investigated. 2-Nitro-5,6,8,9-tetrahydrobenzo[7]annulen-7-one (8) represents the central building block for the introduction of various substituents at the 2-position and various 7-amino moieties. N-(3-Phenylpropyl)-6,7,8,9-tetrahydro-5H-benzo[7]annulen-7-amines with a 2-NO (7 c), 2-Cl (15 c), or 2-OBn group (22 c) show very high GluN2B affinity (K =1.6-3.6 nm). Docking studies revealed the same binding poses for benzo[7]annulen-7-amines and ifenprodil at the interface of GluN1b and GluN2B subunits. The large 2-OBn moiety of 22 c occupies a previously unrecognized subpocket, which explains its high GluN2B affinity (K =3.6 nm). In two-electrode voltage clamp experiments and cytoprotection assays, the high-affinity GluN2B ligands 7 c, 15 c, and 22 c could not inhibit the glutamate-/glycine-evoked current and cytotoxic effects. However, the analogous phenols 16 c ((3-phenylpropyl)amino moiety) and 16 d ((4-phenylbutyl)amino moiety) with 10-fold lower GluN2B affinity (K =28 and 21 nm, respectively) showed promising inhibition of glutamate-/glycine-evoked effects in both assays. The presence of a phenolic hydroxy group seems to be essential for inducing conformational changes of the receptor protein, which finally results in closure of the ion conduction pathway.

摘要

选择性靶向含GluN2B亚基的N-甲基-D-天冬氨酸(NMDA)受体的拮抗剂在治疗各种神经疾病方面具有重要意义。在本研究中,研究了各种取代的苯并[7]环壬烯-7-胺与其GluN2B亲和力之间的关系。2-硝基-5,6,8,9-四氢苯并[7]环壬烯-7-酮(8)是在2-位引入各种取代基和各种7-氨基部分的核心结构单元。具有2-NO(7 c)、2-Cl(15 c)或2-OBn基团(22 c)的N-(3-苯丙基)-6,7,8,9-四氢-5H-苯并[7]环壬烯-7-胺显示出非常高的GluN2B亲和力(K =1.6-3.6 nm)。对接研究揭示了苯并[7]环壬烯-7-胺和艾芬地尔在GluN1b和GluN2B亚基界面处具有相同的结合姿势。22 c的大2-OBn部分占据了一个以前未被识别的亚口袋,这解释了其高GluN2B亲和力(K =3.6 nm)。在双电极电压钳实验和细胞保护试验中,高亲和力的GluN2B配体7 c、15 c和22 c不能抑制谷氨酸/甘氨酸诱发的电流和细胞毒性作用。然而,类似的酚类化合物16 c((3-苯丙基)氨基部分)和16 d((4-苯丁基)氨基部分),其GluN2B亲和力低10倍(分别为K =28和21 nm),在两种试验中均显示出对谷氨酸/甘氨酸诱发效应有良好的抑制作用。酚羟基的存在似乎是诱导受体蛋白构象变化所必需的,最终导致离子传导途径关闭。

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