Boyce Thompson Institute and Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, United States.
J Org Chem. 2021 Aug 20;86(16):11269-11276. doi: 10.1021/acs.joc.0c03043. Epub 2021 Mar 4.
We describe two complementary approaches based on a convergent [4+2] logic toward the synthesis of amorfrutins, cannabinoids, and related plant metabolites. An anionic cascade cyclization employing β-methoxycrotonates and β-chloro-α,β-unsaturated esters yielded amorfrutins in four linear steps and demonstrated utility of β-alkoxycrotonate-derived nucleophiles as functional equivalents of β-ketoester-derived dianions. Analogously, tandem Diels-Alder/retro-Diels-Alder cycloaddition of dimedone-derived bis(trimethylsiloxy)-dienes and α,β-alkynyl ester dienophiles provided facile access to resorcinol precursors of amorfrutins and cannabinoids, avoiding late-stage installation of prenyl or geranyl moieties as in previous approaches.
我们描述了两种互补的方法,基于收敛的[4+2]逻辑,用于合成阿莫弗林、大麻素和相关植物代谢物。采用β-甲氧基丁烯酸酯和β-氯-α,β-不饱和酯的阴离子级联环化反应,以四个线性步骤得到阿莫弗林,并证明了β-烷氧基丁烯酸酯衍生的亲核试剂作为β-酮酯衍生的二阴离子的功能等价物的实用性。类似地,二甲基酮衍生的双(三甲硅氧基)-二烯和α,β-炔基酯二烯试剂的串联 Diels-Alder/retro-Diels-Alder 环加成反应提供了易于获得阿莫弗林和大麻素的间苯二酚前体,避免了在以前的方法中晚期安装烯丙基或香叶基部分。