Kalshetti Manojkumar Gulabrao, Argade Narshinha Panditrao
Division of Organic Chemistry, National Chemical Laboratory (CSIR), Pune, India.
Alkaloids Chem Biol. 2020;83:187-223. doi: 10.1016/bs.alkal.2019.12.001. Epub 2020 Jan 27.
The tryptamine-derived polycyclic bridged bioactive indole alkaloids subincanadines A-G were isolated in 2002 by Ohsaki and coworkers from the bark of the Brazilian medicinal plant Aspidosperma subincanum. Kobayashi proposed that subincanadines D-F could be biosynthetically resulting from stemmadenine via two different pathways and, furthermore, that the subincanadines A-C could be biogenetically resulting from subincanadines D and E. Kam and coworkers, in their focused efforts, isolated five indole alkaloids from Malaysian Kopsia arborea species, namely valparicine, apparicine, arboridinine, arborisidine, and arbornamine in combination with subincanadine E. On the basis of structural features, it has been proposed and proved in some examples that subincanadine E is a biogenetic precursor of these five different bioactive indole alkaloids bearing complex structural architectures. All important information on isolation, characterization, bioactivity, probable biogenetic pathways, and more specifically racemic and enantioselective total synthesis of subincanadine alkaloids and their biogenetic congeners are summarized in the present chapter. Special importance is given to the total synthesis and the synthetic strategies intended therein, comprising a set of main reactions.
2002年,大崎及其同事从巴西药用植物亚坎多籽树(Aspidosperma subincanum)的树皮中分离出了色胺衍生的多环桥联生物活性吲哚生物碱亚坎多籽碱A - G。小林提出,亚坎多籽碱D - F可能是由蛇根碱通过两条不同途径生物合成产生的,此外,亚坎多籽碱A - C可能是由亚坎多籽碱D和E生源合成产生的。卡姆及其同事经过集中研究,从马来西亚乔木柯木(Kopsia arborea)中分离出了五种吲哚生物碱,即瓦尔帕里辛、阿帕里辛、乔木里丁宁、乔木里西丁和乔木胺,并同时分离出了亚坎多籽碱E。基于结构特征,有人提出并在一些实例中证明,亚坎多籽碱E是这五种具有复杂结构的不同生物活性吲哚生物碱的生源前体。本章总结了关于亚坎多籽碱生物碱及其生源类似物的分离、表征、生物活性、可能的生源途径,更具体地说是外消旋和对映选择性全合成的所有重要信息。特别强调了全合成及其预期的合成策略,包括一系列主要反应。