Craig Robert A, Roizen Jennifer L, Smith Russell C, Jones Amanda C, Virgil Scott C, Stoltz Brian M
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.
Chem Sci. 2017 Jan 1;8(1):507-514. doi: 10.1039/C6SC03347D. Epub 2016 Aug 17.
An enantioselective and diastereoselective approach toward the synthesis of the polycyclic norditerpenoid ineleganolide is disclosed. A palladium-catalyzed enantioselective allylic alkylation is employed to stereoselectively construct the requisite chiral tertiary ether and facilitate the synthesis of a 1,3--cyclopentenediol building block. Careful substrate design enabled the convergent assembly of the ineleganolide [6,7,5,5]-tetracyclic scaffold by a diastereoselective cyclopropanation-Cope rearrangement cascade under unusually mild conditions. 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. This work represents the first successful synthesis of the core structure of any member of the polycyclic norcembranoid diterpene family of natural products. Advanced synthetic manipulations generated a series of natural product-like compounds that were shown to possess selective secretory antagonism of either interleukin-5 or interleukin-17. This bioactivity stands in contrast to the known antileukemic activity of ineleganolide and suggests the norcembranoid natural product core may serve as a useful scaffold for the development of diverse therapeutics.
本文公开了一种对映选择性和非对映选择性合成多环降二萜类化合物异优雅内酯的方法。采用钯催化的对映选择性烯丙基烷基化反应立体选择性地构建所需的手性叔醚,并促进1,3-环戊二醇结构单元的合成。精心的底物设计使得在异常温和的条件下,通过非对映选择性环丙烷化-Cope重排串联反应实现了异优雅内酯[6,7,5,5]-四环骨架的汇聚式组装。利用后期合成中间体基态能量的计算评估来指导合成开发,并有助于研究这些高度受限且紧凑的多环结构的构象刚性。这项工作代表了多环降碳二萜类天然产物家族中任何成员核心结构的首次成功合成。先进的合成操作产生了一系列类似天然产物的化合物,这些化合物显示出对白细胞介素-5或白细胞介素-17具有选择性分泌拮抗作用。这种生物活性与异优雅内酯已知的抗白血病活性形成对比,并表明降碳二萜类天然产物核心可能作为开发多种治疗药物的有用骨架。