Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, State Key Laboratory of Virology, Wuhan University School of Pharmaceutical Sciences , Wuhan 430071, China.
J Med Chem. 2014 Apr 24;57(8):3532-45. doi: 10.1021/jm500268j. Epub 2014 Apr 7.
We have explored the isoelectronic replacement of the C═C double bond found at the core of many nonsteroidal estrogen ligands with a simple Schiff base (C═N). Di- and triaryl-substituted imine derivatives were conveniently prepared by the condensation of benzophenones with various anilines without the need for phenolic hydroxy protection. Most of these imines demonstrated high affinity for the estrogen receptors, which, in some cases exceeded that of estradiol. In cell-based assays, these imines profiled as ERα agonists but as ERβ antagonists, showing preferential reliance on the N-terminal activation function (AF1), which is more active in ERα. X-ray analysis revealed that the triaryl-imines distort the ligand-binding pocket in a new way: by controlling the separation of helices 3 and 11, which appears to alter the C-terminal AF2 surface that binds transcriptional coactivators. This work suggests that C═N for C═C substitution might be more widely considered as a general strategy for preparing drug analogues.
我们探索了在许多非甾体雌激素配体核心处发现的 C═C 双键的等电子取代,用简单的席夫碱 (C═N) 取代。通过将二苯甲酮与各种苯胺缩合,无需酚羟基保护,即可方便地制备二芳基和三芳基取代的亚胺衍生物。大多数这些亚胺对雌激素受体具有高亲和力,在某些情况下超过了雌二醇。在基于细胞的测定中,这些亚胺表现为 ERα 激动剂,但作为 ERβ 拮抗剂,显示出对 N 端激活功能 (AF1) 的优先依赖,ERα 中的 AF1 更活跃。X 射线分析表明,三芳基亚胺以一种新的方式扭曲配体结合口袋:通过控制 3 号和 11 号螺旋的分离,这似乎改变了结合转录共激活因子的 C 端 AF2 表面。这项工作表明,C═N 对 C═C 的取代可能更广泛地被认为是制备药物类似物的一般策略。