Department of Chemistry University of Iowa, Iowa City, Iowa 52242-1294, USA.
J Org Chem. 2009 Sep 18;74(18):6965-72. doi: 10.1021/jo901161m.
The first total synthesis of (+)-schweinfurthin B, a potent and differentially active cytotoxic agent, has been accomplished. Completion of the synthesis required just 16 steps in the longest linear sequence from commercially available vanillin. Key synthetic transformations included a Shi epoxidation and an efficient cascade cyclization initiated by treatment of the resulting epoxide with BF(3).OEt(2). Furthermore, use of a methyl ether as a stable protecting group for benzylic alcohols dramatically increased the efficiency of the overall sequence. The benzylic ether can be removed from this electron-rich aromatic system through oxidation with DDQ that provided the desired aldehyde intermediate in quantitative yield and shortened the synthetic sequence. Introduction of the A-ring diol in the required cis stereochemistry then became viable through a short sequence highlighted by an aldol condensation with benzaldehyde to introduce an olefin as a latent carbonyl group at the C-3 position. This synthesis established for the first time the absolute stereochemistry of the natural product, and provides access to material on a scale that will advance biological studies. The total synthesis of the closely related compound (+)-schweinfurthin E also is reported.
(+)-schweinfurthin B 的全合成,一种有效的、具有差异活性的细胞毒剂,已经完成。从商业上可获得的香草醛开始,最长线性序列中仅需 16 步即可完成合成。关键的合成转化包括 Shi 环氧化和通过用 BF(3).OEt(2)处理所得环氧化物引发的有效级联环化。此外,使用甲醚作为苄醇的稳定保护基极大地提高了整个序列的效率。该苄醚可以通过用 DDQ 氧化从这个富电子芳香族体系中除去,提供了所需的醛中间体,产率定量,并缩短了合成序列。通过一个以醛缩合与苯甲醛反应为特色的短序列,引入一个烯烃作为 C-3 位的潜在羰基基团,从而使 A 环二醇以所需的顺式立体化学构型引入。这个合成首次确立了天然产物的绝对立体化学,并提供了可以推进生物学研究的规模的材料。还报道了密切相关的化合物(+)-schweinfurthin E 的全合成。