全合成
化学
环己酮
立体化学
生物碱
产量(工程)
级联反应
仿生合成
皮克特-斯宾格勒反应
组合化学
有机化学
催化作用
材料科学
冶金
作者
Xiangtao Chen,Huijing Wang,Jie Zeng,Qiuhong Li,Tonghui Zhang,Qiaoyun Yang,Pei Tang,Fen‐Er Chen
标识
DOI:10.1002/anie.202407149
摘要
Abstract: This paper describes a concise, asymmetric and stereodivergent total synthesis of tacaman alkaloids. A key step in this synthesis is the biocatalytic Baeyer‐Villiger oxidation of cyclohexanone, which was developed to produce seven‐membered lactones and establish the required stereochemistry at the C14 position (92% yield, 99% ee, 500 mg scale). Cis‐ and trans‐tetracyclic indoloquinolizidine scaffolds were rapidly synthesized through an acid‐triggered, tunable acyl‐Pictet‐Spengler type cyclization cascade, serving as the pivotal reaction for building the alkaloid skeleton. Computational results revealed that hydrogen bonding was crucial in stabilizing intermediates and inducing different addition reactions during the acyl‐Pictet‐Spengler cyclization cascade. By strategically using these two reactions and the late‐stage diversification of the functionalized indoloquinolizidine core, the asymmetric total syntheses of eight tacaman alkaloids were achieved. This study may potentially advance research related to the medicinal chemistry of tacaman alkaloids.
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