Department of Drug Design, University of Groningen, A. Deusinglaan 1, Groningen 9713 AV, The Netherlands.
J Org Chem. 2021 Jul 16;86(14):9771-9780. doi: 10.1021/acs.joc.1c01170. Epub 2021 Jun 29.
Highly substituted isoquinolone-4-carboxylic acid is an important bioactive scaffold; however, it is challenging to access it in a general and short way. A Cu-catalyzed cascade reaction was successfully designed involving the Ugi postcyclization strategy by using ammonia and 2-halobenzoic acids as crucial building blocks. Privileged polysubstituted isoquinolin-1(2)-ones were constructed in a combinatorial format with generally moderate to good yields. The protocol, with a ligand-free catalytic system, shows a broad substrate scope and good functional group tolerance toward excellent molecular diversity. Free 4-carboxy-isoquinolone is now for the first time generally accessible by a convergent multicomponent reaction protocol.
高取代异喹啉-4-羧酸是一种重要的生物活性支架;然而,以通用且简短的方式获得它具有挑战性。通过使用氨和 2-卤代苯甲酸作为关键构建块,成功设计了一种涉及 Ugi 后环化策略的 Cu 催化级联反应。使用特权多取代异喹啉-1(2)-酮以组合格式构建,总体产率中等至良好。该方案具有无配体催化体系,对优异的分子多样性表现出广泛的底物范围和良好的官能团耐受性。游离的 4-羧基-异喹啉现在首次可通过收敛的多组分反应方案获得。