对映选择合成
溴尿嘧啶
组合化学
亲核细胞
电泳剂
化学
曼尼希反应
催化作用
化学空间
纳米技术
药物发现
计算机科学
有机化学
乙酰化
材料科学
生物化学
基因
作者
Marie-Ange Lespinasse,Kaiyao Wei,Justine Perrin,Matthias Winkler,Sieme Hamaidia,Alexis Leroy,Zuzana Macek Jilkova,Christian Philouze,Patrice N Marche,Carlo Petosa,Jérôme Govin,Anouk Emadali,Yung-Sing Wong
标识
DOI:10.1002/chem.202202293
摘要
The pharmaceutical industry has a pervasive need for chiral specific molecules with optimal affinity for their biological targets. However, the mass production of such compounds is currently limited by conventional chemical routes, that are costly and have an environmental impact. Here, we propose an easy access to obtain new tetrahydroquinolines, a motif found in many bioactive compounds, that is rapid and cost effective. Starting from simple raw materials, the procedure uses a proline-catalyzed Mannich reaction followed by the addition of BF3 ⋅ OEt2 , which generates a highly electrophilic aza-ortho-quinone methide intermediate capable of reacting with different nucleophiles to form the diversely functionalized tetrahydroquinoline. Moreover, this enantioselective one-pot process provides access for the first time to tetrahydroquinolines with a cis-2,3 and trans-3,4 configuration. As proof of concept, we demonstrate that a three-step reaction sequence, from simple and inexpensive starting compounds and catalysts, can generate a BD2-selective BET bromodomain inhibitor with anti-inflammatory effect.
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