Sakai Takeo
Faculty of Pharmacy, Meijo University.
Yakugaku Zasshi. 2017;137(9):1095-1101. doi: 10.1248/yakushi.17-00116.
This article reviews our studies on the oxiranyl anion-based, [X+2+Y]-type convergent strategy for the synthesis of polycyclic ether natural products. The strategy is noteworthy for its flexibility, which allows for the generation of different-sized fused ring systems based on a ring expansion reaction. For a precise understanding of this key ring expansion, we first focused on the reaction mechanism, in which an equatorial attack of TMS-diazomethane was determined to be the crucial step. In the later part of this review, the application of our oxiranyl anion-based strategy to large fused ring systems is described. The advantageous flexibility is highlighted in the divergent synthesis of five octacyclic ethers involving the CDEFGHIJ-ring skeleton of yessotoxin and its ring-modified analogs. Total synthesis of gymnocin-A was achieved using the oxiranyl anion convergent strategy, which furnished its large system of fourteen contiguous ether rings.
本文综述了我们关于基于环氧乙烷基阴离子的[X+2+Y]型汇聚策略用于合成多环醚天然产物的研究。该策略因其灵活性而值得关注,这种灵活性使得基于扩环反应能够生成不同大小的稠环体系。为了精确理解这一关键的扩环反应,我们首先聚焦于反应机理,其中确定TMS-重氮甲烷的赤道面进攻是关键步骤。在本综述的后半部分,描述了我们基于环氧乙烷基阴离子的策略在大型稠环体系中的应用。在涉及岩沙海葵毒素的CDEFGHIJ环骨架及其环修饰类似物的五种八环醚的发散合成中,突出了这种有利的灵活性。使用环氧乙烷基阴离子汇聚策略实现了裸甲藻毒素-A的全合成,该策略构建了其由14个连续醚环组成的大型体系。