Enantioselective aza-Michael Cyclization Reaction Catalyzed by Quinine-Derived Monoquaternary Ammonium Salts: an Effective Route to Synthesize Letermovir

Liang Chen, Weiyuan Liu, Siju Bi, Ting Zhou, Jingwen Pan, Xunlei Lv, Kuaile Lin, Wei-cheng Zhou
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Abstract

A series of mono- or bis-quaternary ammonium salts derived from cinchonidine or quinine was synthesized and screened as potent phase-transfer catalysts for the reaction of aza-Michael cyclization, the key step in the synthesis of letermovir. During the reaction of aza-Michael cyclization, the screened monoquaternary ammonium salt quinine derivative Q1 transferred 7 to 8 with 91.9% yield and 58% ee. The application of Q1 was preferred, due to its enantioselectivity, the possibility of reuse, and the lower cost in large-scale preparation. Furthermore, the racemization condition of letermovir enantiomer was also explored for the possibility to develop the resolution/racemization process. With the optimal catalyst Q1 in hand, the synthesis of letermovir may be more convenient and economical in the future.
奎宁类单季铵盐催化aza-Michael环化反应:合成Letermovir的有效途径
合成了一系列由cinchonidine或quinine衍生的单季铵盐或双季铵盐,并筛选了它们作为合成letermovir的关键步骤za- michael环化反应的有效相转移催化剂。在aza-Michael环化反应中,筛选出的单季铵盐奎宁衍生物Q1转移7 ~ 8,产率91.9%,ee 58%。由于Q1具有对映体选择性,可重复使用,且大规模制备成本较低,因此首选应用Q1。此外,还对左旋对映体的外消旋条件进行了探讨,以期开发拆分/外消旋工艺。有了最佳催化剂Q1,未来合成letermovir可能会更加方便和经济。
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