Department of Medicinal Chemistry and Molecular Pharmacology, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907, United States.
J Med Chem. 2011 Aug 11;54(15):5508-21. doi: 10.1021/jm200334c. Epub 2011 Jul 14.
To probe the space at the floor of the orthosteric ligand binding site in the dopamine D(1) receptor, four methylated analogues of dihydrexidine (DHX) were synthesized with substitutions at the 7 and 8 positions. The 8α-axial, 8β-equatorial, and 7α-equatorial were synthesized by photochemical cyclization of appropriately substituted N-benzoyl enamines, and the 7β-axial analogue was prepared by an intramolecular Henry reaction. All of the methylated analogues displayed losses in affinity when compared to DHX (20 nM): 8β-Me(ax)-DHX (270 nM), 8α-Me(eq)-DHX (920 nM), 7β-Me(eq)-DHX (6540 nM), and 7α-Me(ax)-DHX (>10000 nM). Molecular modeling studies suggest that although the disruption of an aromatic interaction between Phe203(5.47) and Phe288(6.51) is the cause for the 14-fold loss in affinity associated with 8β-axial substitution, unfavorable steric interactions with Ser107(3.36) result in the more dramatic decreases in binding affinity suffered by the rest of the analogues.
为了探究多巴胺 D1 受体正构配体结合位点底部的空间,合成了 4 种二氢可待因(DHX)的甲基化类似物,这些类似物在 7 位和 8 位有取代。通过适当取代的 N-苯甲酰烯胺的光化学环化,合成了 8α-轴向、8β-赤道和 7α-赤道取代物,而 7β-轴向类似物则通过分子内 Henry 反应制备。与 DHX(20 nM)相比,所有甲基化类似物的亲和力都有所降低:8β-Me(ax)-DHX(270 nM)、8α-Me(eq)-DHX(920 nM)、7β-Me(eq)-DHX(6540 nM)和 7α-Me(ax)-DHX(>10000 nM)。分子建模研究表明,尽管 Phe203(5.47)和 Phe288(6.51)之间的芳香相互作用被破坏是导致 8β-轴向取代物亲和力降低 14 倍的原因,但与 Ser107(3.36)的不利空间相互作用导致其余类似物的结合亲和力急剧下降。