化学
立体中心
环异构化
对映选择合成
双环分子
立体化学
立体专一性
吡啶
吲哚试验
产量(工程)
组合化学
分子内力
芯(光纤)
转移加氢
对映体
立体异构
全合成
分子内反应
立体选择性
除氧
不对称氢化
吲哚生物碱
还原(数学)
核磁共振波谱
作者
Ashlyn Bohn,Benjamin M Cipriano,Nikhil R. Tasker,P. Wipf
出处
期刊:Synthesis
[Thieme Medical Publishers (Germany)]
日期:2025-12-25
摘要
Abstract The signature indole-fused 9-azabicyclo[3.3.1]nonane (9-ABN) core of macroline-type alkaloids in its natural configuration has been accessed in 4 steps and 16% overall yield from 1H-indole and an l-menthyl nicotinate-derived pyridyl alcohol. The two starting fragments were condensed using a hydrogen auto-transfer (HA) strategy. The key stereocenter at C-5 was installed in up to 95:5 dr with a double diastereoselective, chiral auxiliary-assisted asymmetric transfer hydrogenation (CAATHy). This selective partial reduction of the pyridine to the tetrahydropyridine set the stage for stereospecific formation of the bridged, bicyclic 9-ABN system via a novel superacid-mediated cycloisomerization reaction. Starting from indole and 6-(hydroxymethyl)nicotinate esters, this new strategy provides rapid, protecting group- and transition metal-free access to the tetracyclic macroline core.
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