White James D, Li Yang, Kim Jungchul, Terinek Miroslav
Department of Chemistry, Oregon State University , Corvallis, Oregon 97331, United States.
J Org Chem. 2015 Dec 4;80(23):11806-17. doi: 10.1021/acs.joc.5b01619. Epub 2015 Sep 25.
An asymmetric total synthesis of the nootropic alkaloid (-)-huperzine A was completed using a cascade sequence initiated by an intramolecular aza-Prins reaction and terminated by a stereoelectronically guided fragmentation of a cyclobutylcarbinyl cation as the key step in assembling the bicyclo[3.3.1]nonene core of the natural product. Intramolecular [2 + 2]-photocycloaddition of the crotyl ether of (S)-4-hydroxycyclohex-2-enone afforded a bicyclo[4.2.0]octanone containing an embedded tetrahydrofuran in which the cyclohexanone moiety was converted to a triisopropylsilyl enol ether and functionalized as an allylic azide. The derived primary amine was acylated with α-phenylselenylacrylic acid, and the resulting amide was reacted with trimethylaluminum to give a [2 + 2]-cycloadduct, which underwent retroaldol fission to produce a fused α-phenylselenyl δ-lactam. Periodate oxidation of this lactam led directly to an α-pyridone, which was converted to a fused 2-methoxypyridine. Reductive cleavage of the activated "pyridylic" C-O bond in this tetracycle and elaboration of the resultant hydroxy ketone to a diketone was followed by chemoselective conversion of the methyl ketone in this structure to an endo isopropenyl group. Condensation of the remaining ketone with methyl carbamate in the presence of acid initiated the programmed cascade sequence and furnished a known synthetic precursor to huperzine A. Subsequent demethylation of the carbamate and the methoxypyridine, accompanied by in situ decarboxylation of the intermediate carbamic acid, gave (-)-huperzine A.
通过分子内氮杂-Prins反应引发、环丁基甲基碳正离子的立体电子导向碎片化终止的串联反应序列,完成了促智生物碱(-)-石杉碱甲的不对称全合成,这是构建天然产物双环[3.3.1]壬烯核心的关键步骤。(S)-4-羟基环己-2-烯酮的巴豆基醚进行分子内[2 + 2]光环化加成,得到一个含有嵌入四氢呋喃的双环[4.2.0]辛酮,其中环己酮部分转化为三异丙基硅基烯醇醚并官能化为烯丙基叠氮化物。衍生的伯胺用α-苯基硒基丙烯酸酰化,所得酰胺与三甲基铝反应得到[2 + 2]环加成物,该环加成物进行逆羟醛裂解以产生稠合的α-苯基硒基δ-内酰胺。该内酰胺的高碘酸盐氧化直接产生α-吡啶酮,其转化为稠合的2-甲氧基吡啶。该四环中活化的“吡啶基”C-O键的还原裂解以及所得羟基酮转化为二酮,随后将该结构中的甲基酮化学选择性转化为内型异丙烯基。剩余的酮与氨基甲酸甲酯在酸存在下缩合,启动了程序化的串联反应序列,并提供了石杉碱甲的已知合成前体。随后氨基甲酸酯和甲氧基吡啶的去甲基化,伴随着中间氨基甲酸的原位脱羧,得到(-)-石杉碱甲。