Boonsombat Jutatip, Zhang Hongjun, Chughtai Majid J, Hartung John, Padwa Albert
Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.
J Org Chem. 2008 May 2;73(9):3539-50. doi: 10.1021/jo8003716. Epub 2008 Apr 1.
The total synthesis of (+/-)-strychnopivotine, (+/-)-tubifolidine, (+/-)-strychnine, and (+/-)-valparicine is reported. The central step in the synthesis consists of an intramolecular [4 + 2]-cycloaddition/rearrangement cascade of an indolyl-substituted amidofuran that delivers an aza-tetracyclic substructure containing the ABCE-rings of the Strychnos alkaloid family. A large substituent group on the amide nitrogen atom causes the reactive s- trans conformation of the amidofuran to be more highly populated, thereby facilitating the Diels-Alder cycloaddition. The reaction also requires the presence of an electron-withdrawing substituent on the indole nitrogen for the cycloaddition to proceed. The cycloaddition/rearrangement cascade was remarkably efficient given that two heteroaromatic systems are compromised in the reaction. Closure to the remaining D-ring of the Strychnos skeleton was carried out from the aza-tetracyclic intermediate by an intramolecular palladium-catalyzed enolate-driven cross-coupling between the N-tethered vinyl iodide and the keto functionality. The cycloaddition/rearrangement approach was successfully applied to (+/-)-strychnopivotine (2), the only Strychnos alkaloid bearing a 2-acylindoline moiety in its pentacyclic framework. A variation of this tactic was then utilized for a synthesis of the heptacyclic framework of (+/-)-strychnine. The total synthesis of (+/-)-strychnine required only 13 steps from furanyl indole 18 and proceeded in an overall yield of 4.4%.
报道了(±)-士的宁枢轴碱、(±)-tubifolidine、(±)-士的宁和(±)-瓦尔帕碱的全合成。合成中的关键步骤包括吲哚基取代的氨基呋喃的分子内[4 + 2]环加成/重排串联反应,该反应生成一个含马钱子生物碱家族ABCE环的氮杂四环子结构。酰胺氮原子上的一个大取代基使氨基呋喃的反应性s-反式构象占比更高,从而促进狄尔斯-阿尔德环加成反应。该反应还需要吲哚氮上有一个吸电子取代基才能进行环加成。考虑到反应中有两个杂芳环体系受到影响,环加成/重排串联反应非常高效。通过分子内钯催化的烯醇化物驱动的N-连接的乙烯基碘与酮官能团之间的交叉偶联,从氮杂四环中间体完成了马钱子骨架剩余D环的闭合。环加成/重排方法成功应用于(±)-士的宁枢轴碱(2),它是唯一在其五环骨架中带有2-酰基吲哚部分的马钱子生物碱。然后利用这种策略的变体合成了(±)-士的宁的七环骨架。从呋喃基吲哚18开始,(±)-士的宁的全合成仅需13步,总产率为4.4%。