Warren and Katherine Schlinger Laboratory for Chemistry and Chemical Engineering, Division of Chemistry and Chemical Engineering , California Institute of Technology , Pasadena , California 91125 , United States.
J Org Chem. 2018 Apr 6;83(7):3467-3485. doi: 10.1021/acs.joc.7b02825. Epub 2018 Mar 19.
An enantioselective and diastereoselective approach toward the synthesis of the tetracyclic scaffold of the furanobutenolide-derived polycyclic norditerpenoids is described. Focusing on synthetic efforts toward ineleganolide, the synthetic approach utilizes a palladium-catalyzed enantioselective allylic alkylation for the construction of the requisite chiral tertiary ether. A diastereoselective cyclopropanation-Cope rearrangement cascade enabled the convergent assembly of the ineleganolide [6,7,5,5]-tetracyclic scaffold. Investigation of substrates for this critical tandem annulation process is discussed along with synthetic manipulations of the [6,7,5,5]-tetracyclic scaffold and the attempted interconversion of the [6,7,5,5]-tetracyclic scaffold of ineleganolide to the isomeric [7,6,5,5]-core of scabrolide A and its naturally occurring isomers. Computational evaluation of ground-state energies of late-stage synthetic intermediates was used to guide synthetic development and aid in the investigation of the conformational rigidity of these highly constrained and compact polycyclic structures.
描述了一种对呋喃丁烯内酯衍生的多环降二萜骨架进行对映选择性和非对映选择性合成的方法。本研究聚焦于伊莱苷内酯的合成,该合成方法利用钯催化的对映选择性烯丙基烷基化反应来构建所需的手性叔醚。通过立体选择性环丙烷化-Cope 重排级联反应,实现了伊莱苷内酯[6,7,5,5]-四环骨架的收敛组装。讨论了该关键串联环化反应的底物研究以及[6,7,5,5]-四环骨架的合成操作,以及尝试将伊莱苷内酯的[6,7,5,5]-四环骨架转化为异构的[7,6,5,5]-斯卡伯罗内酯 A 核及其天然存在的异构体。对晚期合成中间体的基态能量进行了计算评估,用于指导合成开发,并有助于研究这些高度约束和紧凑的多环结构的构象刚性。