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金催化的杂环化学:以吡喃酮天然产物为例的典型案例研究。

Gold Catalysis for Heterocyclic Chemistry: A Representative Case Study on Pyrone Natural Products.

机构信息

Max-Planck-Institut für Kohlenforschung, 45470, Mülheim/Ruhr, Germany.

出版信息

Angew Chem Int Ed Engl. 2018 Apr 9;57(16):4215-4233. doi: 10.1002/anie.201707260. Epub 2017 Oct 12.

Abstract

2-Pyrones and 4-pyrones are common structural motifs in bioactive natural products. However, traditional methods for their synthesis, which try to emulate the biosynthetic pathway of cyclization of a 1,3,5-tricarbonyl precursor, are often harsh and, therefore, not particularly suitable for applications to polyfunctionalized and/or sensitive target compounds. π-Acid catalysis, in contrast, has proved to be better for a systematic exploration of the pyrone estate. To this end, alkynes are used as stable ketone surrogates, which can be activated under exceedingly mild conditions due to the pronounced carbophilicity of [LAu] fragments (L=two electron donor ligand); attack of a tethered ester carbonyl group onto the transient alkyne-gold complex then forges the pyrone ring in a fully regiocontrolled manner.

摘要

2-吡喃酮和 4-吡喃酮是生物活性天然产物中常见的结构基序。然而,尝试模拟 1,3,5-三羰基前体环化生物合成途径的传统合成方法往往很苛刻,因此不太适合应用于多官能化和/或敏感的目标化合物。相比之下,π-酸催化更适合系统地探索吡喃酮领域。为此,炔烃被用作稳定的酮替代物,由于 [LAu]片段(L=双电子给体配体)的强烈亲电性,炔烃可以在极其温和的条件下被激活;然后,连接的酯羰基基团攻击瞬态的炔烃-金配合物,以完全区域控制的方式形成吡喃酮环。

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