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通过氮原子插入实现吲哚骨架的后期多样化

Late-stage diversification of indole skeletons through nitrogen atom insertion.

作者信息

Reisenbauer Julia C, Green Ori, Franchino Allegra, Finkelstein Patrick, Morandi Bill

机构信息

Laboratorium für Organische Chemie, ETH Zürich, 8093 Zürich, Switzerland.

出版信息

Science. 2022 Sep 2;377(6610):1104-1109. doi: 10.1126/science.add1383. Epub 2022 Sep 1.

Abstract

Compared with peripheral late-stage transformations mainly focusing on carbon-hydrogen functionalizations, reliable strategies to directly edit the core skeleton of pharmaceutical lead compounds still remain scarce despite the recent flurry of activity in this area. Herein, we report the skeletal editing of indoles through nitrogen atom insertion, accessing the corresponding quinazoline or quinoxaline bioisosteres by trapping of an electrophilic nitrene species generated from ammonium carbamate and hypervalent iodine. This reactivity relies on the strategic use of a silyl group as a labile protecting group that can facilitate subsequent product release. The utility of this highly functional group-compatible methodology in the context of late-stage skeletal editing of several commercial drugs is demonstrated.

摘要

与主要集中在碳氢官能化的外周后期转化相比,尽管该领域近期活动频繁,但直接编辑药物先导化合物核心骨架的可靠策略仍然稀缺。在此,我们报告了通过氮原子插入对吲哚进行骨架编辑,通过捕获由氨基甲酸铵和高价碘产生的亲电氮烯物种来获得相应的喹唑啉或喹喔啉生物电子等排体。这种反应性依赖于将硅烷基作为不稳定保护基团的策略性使用,该保护基团可促进后续产物释放。证明了这种高度官能团兼容方法在几种商业药物后期骨架编辑中的实用性。

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