Deconstruction - reconstruction approach to analyze the essential structural elements of tetrahydro-3-benzazepine-based antagonists of GluN2B subunit containing NMDA receptors

Dey S, Temme L, Schreiber JA, Schepmann D, Frehland B, Lehmkuhl K, Strutz-Seebohm N, Seebohm G, Wunsch B

Research article (journal) | Peer reviewed

Abstract

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 sigma1 and sigma2 affinities. Introduction of a NO2 (6d) or NH2 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 (Ki = 2.2 nM) and, moreover, high selectivity over the PCP binding site, sigma1 and sigma2 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.

Details about the publication

Volume138
Page range552-564
StatusPublished
Release year2017
Language in which the publication is writtenEnglish
DOI10.1016/j.ejmech.2017.06.068
Link to the full texthttps://www.ncbi.nlm.nih.gov/pubmed/28704758
KeywordsBenzazepines/chemical synthesis/chemistry/pharmacology; Conformational restriction; Cytoprotection; Docking; Dose-Response Relationship; Drug; Functional activity; GluN2B selective NMDA receptor ligands; Humans; Lipophilicity; Models; Molecular; Molecular Structure; N-triflyl protective group; NMDA receptor; Radioligand receptor binding studies; Receptors; N-Methyl-D-Aspartate/antagonists {&} inhibitors/metabolism; Structure affinity relationships; Structure-Activity Relationship; Tetrahydro-3-benzazepin-1-ols; Trifluormethanesulfinate elimination; Two-electrode voltage clamp

Authors from the University of Münster

Schulze-Bahr, Eric
Department for Cardiovascular Medicine