Reddy P Ganapati, Baskaran Sundarababu
Department of Chemistry, Indian Institute of Technology, Madras, Chennai-600036, India.
J Org Chem. 2004 Apr 30;69(9):3093-101. doi: 10.1021/jo035258x.
A novel and general method has been developed for the stereoselective construction of 5-hydroxymethyl azabicyclic ring skeletons based on epoxide-initiated cationic cyclization of azides. The key cyclization reaction was systematically studied with the model compound, 3-(1-oxa-spiro[2.4]hept-4-yl)propyl azide 3a, and EtAlCl(2) was found to be an ideal choice as the catalyst. The generality of this transformation was further tested with different ring sizes, where six- and seven-membered epoxyazides 3b,c underwent smooth cyclization to give 5-hydroxymethyl azepine 4b and 5-hydroxymethyl azocine 4c, respectively, as a single detectable diastereomer. This novel methodology was elegantly applied in the stereoselective total synthesis of indolizidine alkaloids 167B and 209D. Further, the enantioselective total synthesis of natural and unnatural indolizidine alkaloids 167B and 209D was accomplished by using Sharpless asymmetric dihydroxylation as a key step.
基于叠氮化物的环氧化物引发的阳离子环化反应,已开发出一种新颖且通用的方法用于立体选择性构建5-羟甲基氮杂双环骨架。使用模型化合物3-(1-氧杂-螺[2.4]庚-4-基)丙基叠氮化物3a对关键环化反应进行了系统研究,发现EtAlCl(2)是理想的催化剂选择。用不同环大小的化合物进一步测试了这种转化的通用性,其中六元环和七元环环氧叠氮化物3b、c顺利环化,分别得到单一可检测非对映异构体5-羟甲基氮杂䓬4b和5-羟甲基氮杂辛4c。这种新颖的方法被巧妙地应用于吲哚里西啶生物碱167B和209D的立体选择性全合成中。此外,以夏普莱斯不对称双羟基化作为关键步骤,完成了天然和非天然吲哚里西啶生物碱167B和209D的对映选择性全合成。