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首页> 外文期刊>Journal of Medicinal Chemistry >Enantiomerically Pure 2-Methyltetrahydro-3-benzazepin-1-ols Selectively Blocking GluN2B Subunit Containing N-Methyl-D-aspartate Receptors
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Enantiomerically Pure 2-Methyltetrahydro-3-benzazepin-1-ols Selectively Blocking GluN2B Subunit Containing N-Methyl-D-aspartate Receptors

机译:对映体纯2-甲基四氢-3-苯并ze庚因-1-醇选择性阻断含有N-甲基-D-天冬氨酸受体的GluN2B亚基

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A chiral pool synthesis was developed to obtain all four stereoisomeric 2-methyl-3-(4-phenylbutyl)tetrahydro-3-benzazepin-1-ols 21, 31, and 32 in a seven- to eight-step sequence. The phenols 32 reveal slightly higher GluN2B affmity than the methyl ethers 21. The GluN2B affinity increases in the order (1R,2S) < (1S,2S) < (1S,2R) < (1R,2R). The stereoisomeric phenols (R,R)-32 and (S,R)-32 show the highest GluN2B affinity and the highest cytoprotective activity. Both compounds represent GluN2B selective allosteric NMDA receptor antagonists. Docking of the 3-benzazepin-1-ols into the ifenprodil binding site of the crystallized GluNlb/GluN2B N-terminal domains led to free binding energies, which correlate nicely with the experimentally determined G1uN2B affinities. The similar G1uN2B affinity of the stereoisomeric phenols (S,S)-32, (R,R)-32, and (S,R)-32 is explained by different binding modes of the 3-benzazepine scaffold. The benzyl ethers 31 reveal unexpectedly high G1uN2B affinity but do not show c-ytoprotective effects. The additional benzyl moiety of 31 binds into a previously unrecognized lipophilic subpocket.
机译:进行了手性库合成,以七到八步的顺序获得了所有四个立体异构体的2-甲基-3-(4-苯基丁基)四氢-3-苯并ze庚因-1-醇21、31和32。酚32的GluN2B亲和力比甲基醚21高。立体异构酚(R,R)-32和(S,R)-32显示出最高的GluN2B亲和力和最高的细胞保护活性。两种化合物均代表GluN2B选择性变构NMDA受体拮抗剂。将3-苯并ze庚因-1-醇对接至结晶的GluNlb / GluN2B N-末端结构域的艾芬地尔结合位点会导致自由结合能,这与实验确定的G1uN2B亲和力很好地相关。立体异构酚(S,S)-32,(R,R)-32和(S,R)-32相似的G1uN2B亲和力是通过3-苯并ze庚因骨架的不同结合方式来解释的。苄基醚31显示出意想不到的高G1uN2B亲和力,但没有显示出c-细胞保护作用。 31的额外苄基部分结合到以前无法识别的亲脂性亚口袋中。

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