Dey Sougata, Temme Louisa, Schreiber Julian A, Schepmann Dirk, Frehland Bastian, Lehmkuhl Kirstin, Strutz-Seebohm Nathalie, Seebohm Guiscard, Wünsch Bernhard
Institut für Pharmazeutische und Medizinische Chemie der Westfälischen Wilhelms-Universität Münster, Corrensstraße 48, D-48149 Münster, Germany; NRW Graduate School of Chemistry, Westfälischen Wilhelms-Universität Münster, Wilhelm-Klemm-Str. 10, D-48149 Münster, Germany.
Institut für Pharmazeutische und Medizinische Chemie der Westfälischen Wilhelms-Universität Münster, Corrensstraße 48, D-48149 Münster, Germany.
Eur J Med Chem. 2017 Sep 29;138:552-564. doi: 10.1016/j.ejmech.2017.06.068. Epub 2017 Jul 1.
The role of the phenolic and benzylic OH moieties for the interaction of tetrahydro-3-benzazepine-1,7-diol 3d with GluN2B subunit containing NMDA receptors was analyzed by their stepwise removal. Elimination of trifluormethanesulfinate from 10 and 13 represent the key steps in the synthesis. Removal of phenolic OH moiety led to 5-fold reduced GluN2B affinity of 4d compared with 3d. Additional removal of the benzylic OH moiety (5d) resulted in further reduced GluN2B affinity but increased σ and σ affinities. Introduction of a NO (6d) or NH moiety (7d) decreased the GluN2B affinity. 3-Benzazepin-1-ol 4i with the N-phenylcyclohexyl side chain showed the highest GluN2B affinity of this series of compounds (K = 2.2 nM) and, moreover, high selectivity over the PCP binding site, σ and σ receptors. In docking studies 3-benzazepines (S)-4-7 adopt the same binding poses as ifenprodil and display the same crucial interactions. Unexpectedly, the high-affinity ligands (S)-4i, (S)-4j, and (S)-6i were not able to inhibit the glutamate/glycine evoked current in two-electrode voltage clamp measurements and the cytotoxic effects of glutamate/glycine on transfected cell lines.
通过逐步去除酚羟基和苄基羟基部分,分析了四氢-3-苯并氮杂卓-1,7-二醇3d与含GluN2B亚基的NMDA受体相互作用中这些部分的作用。从10和13中消除三氟甲磺酸盐是合成中的关键步骤。去除酚羟基部分导致4d对GluN2B的亲和力相比3d降低了5倍。进一步去除苄基羟基部分(5d)导致GluN2B亲和力进一步降低,但增加了对σ和σ受体的亲和力。引入NO(6d)或NH部分(7d)降低了GluN2B亲和力。具有N-苯基环己基侧链的3-苯并氮杂卓-1-醇4i在该系列化合物中显示出最高的GluN2B亲和力(K = 2.2 nM),而且对PCP结合位点、σ和σ受体具有高选择性。在对接研究中,3-苯并氮杂卓(S)-4-7采取与艾芬地尔相同的结合姿势,并表现出相同的关键相互作用。出乎意料的是,在双电极电压钳测量中,高亲和力配体(S)-4i、(S)-4j和(S)-6i无法抑制谷氨酸/甘氨酸诱发的电流,以及谷氨酸/甘氨酸对转染细胞系的细胞毒性作用。