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基于亚氨基狄尔斯-阿尔德反应构建用于海洋肝毒素柱孢藻毒素全合成的哌啶A环单元。

Imino Diels-Alder-Based Construction of a Piperidine A-Ring Unit for Total Synthesis of the Marine Hepatotoxin Cylindrospermopsin.

作者信息

Heintzelman Geoffrey R., Weinreb Steven M., Parvez Masood

机构信息

Department of Chemistry, University of Calgary, 2500 University Drive, N.W., Calgary, Alberta T2N 1N4, Canada.

出版信息

J Org Chem. 1996 Jul 12;61(14):4594-4599. doi: 10.1021/jo960035a.

Abstract

The synthesis of a piperidine A-ring precursor to the alkaloid cylindrospermopsin (1) is described. The initial approach to the A-ring precursor focused on the imino Diels-Alder reaction of diene 8 with ethyl (N-tosylimino)acetate (9) to form the cycloadduct 10 as a single stereoisomer. However, all attempts to convert ester 10 to a requisite diene such as 5 were unsuccessful. An alternative strategy involved the Diels-Alder cycloaddition of N-tosylimine 9 with oxygenated diene 19 under either thermal or Lewis acid-catalyzed conditions to produce a mixture of cis and trans enones 20 and 21. Although the undesired cis-enone 20 was the major product under all reaction conditions, it could be converted to the desired trans enone 21 by acid-catalyzed isomerization. Copper-mediated conjugate addition of vinylmagnesium bromide to cis-enone 20 followed by stereoselective ketone reduction with L-Selectride produced alcohol 23, whose structure was confirmed by X-ray crystallography. Similarly, trans-enone 21 was converted to alcohol 25 whose structure and stereochemistry were also established by X-ray analysis. Alcohol 25 was then protected as the silyl ether 26, which was hydroborated at the terminal olefin to produce primary alcohol ester 28having the stereochemistry and functionality needed for cylindrospermopsin.

摘要

本文描述了生物碱柱孢藻毒素(1)的哌啶A环前体的合成。A环前体的最初合成方法聚焦于二烯8与乙酸乙酯(N-甲苯磺酰基亚氨基)酯(9)的亚氨基狄尔斯-阿尔德反应,以形成单一立体异构体的环加成产物10。然而,将酯10转化为所需二烯(如5)的所有尝试均未成功。另一种策略涉及在热或路易斯酸催化条件下,N-甲苯磺酰基亚胺9与氧化二烯19进行狄尔斯-阿尔德环加成反应,以生成顺式和反式烯酮20和21的混合物。尽管在所有反应条件下不需要的顺式烯酮20都是主要产物,但它可以通过酸催化异构化转化为所需的反式烯酮21。铜介导的乙烯基溴化镁对顺式烯酮20的共轭加成,随后用L-选择氢化物进行立体选择性酮还原,生成醇23,其结构通过X射线晶体学得到证实。同样,反式烯酮21转化为醇25,其结构和立体化学也通过X射线分析确定。然后将醇25保护为甲硅烷基醚26,其在末端烯烃处进行硼氢化反应,生成具有柱孢藻毒素所需立体化学和官能团的伯醇酯28。

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