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通过金(I)催化的叠氮炔环化反应来获得吲哚稠合苯并中环。

Access to Indole-Fused Benzannulated Medium-Sized Rings through a Gold(I)-Catalyzed Cascade Cyclization of Azido-Alkynes.

机构信息

Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto, 606-8501, Japan.

Current Address: Department of Medicinal Chemistry, Kyoto Pharmaceutical University, Yashima-ku, Kyoto, 607-8412, Japan.

出版信息

Chemistry. 2021 Sep 9;27(51):12992-12997. doi: 10.1002/chem.202101824. Epub 2021 Jul 9.

Abstract

Because benzannulated and indole-fused medium-sized rings are found in many bioactive compounds, combining these fragments might lead to unexplored areas of biologically relevant and uncovered chemical space. Herein is shown that α-imino gold carbene chemistry can play an important role in solving the difficulty in the formation of medium-sized rings. Namely, phenylene-tethered azido-alkynes undergo arylative cyclization through the formation of a gold carbene intermediate to afford benzannulated indole-fused medium-sized tetracycles. The reactions allow a range of different aryl substitution patterns and efficient access to these otherwise difficult-to-obtain medium-sized rings. This study also demonstrates the feasibility of the semihollow-shaped C-dtbm ligand for the construction of a nine-membered ring.

摘要

由于苯并稠合和吲哚稠合的中环在许多生物活性化合物中都有发现,因此将这些片段结合起来可能会开拓出具有生物相关性且尚未被开发的化学空间。本文表明,α-亚氨基金卡宾化学可以在解决中环形成的困难方面发挥重要作用。具体来说,苯环连接的叠氮炔烃通过金卡宾中间体的形成进行芳基化环化,得到苯并稠合的吲哚稠合的中环四环化合物。这些反应允许一系列不同的芳基取代模式,并有效地获得这些否则难以获得的中环。本研究还证明了半空心形 C-dtbm 配体用于构建九元环的可行性。

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