化学
组合化学
有机合成
电泳剂
选择性
催化作用
立体选择性
级联
试剂
兴奋剂
干扰素基因刺激剂
生化工程
酶
有机化学
受体
生物化学
色谱法
胞浆
工程类
作者
Tamas Benkovics,Feng Peng,Eric M. Phillips,Chihui An,Rachel S. Bade,Cheol K. Chung,Zachary E. X. Dance,Patrick S. Fier,Jacob H. Forstater,Zhijian Liu,Zhuqing Liu,Peter E. Maligres,Nicholas Marshall,Nastaran Salehi Marzijarani,John A. McIntosh,Steven P. Miller,Jeffrey C. Moore,Andrew J. Neel,Jennifer V. Obligacion,Weilan Pan
摘要
As practitioners of organic chemistry strive to deliver efficient syntheses of the most complex natural products and drug candidates, further innovations in synthetic strategies are required to facilitate their efficient construction. These aspirational breakthroughs often go hand-in-hand with considerable reductions in cost and environmental impact. Enzyme-catalyzed reactions have become an impressive and necessary tool that offers benefits such as increased selectivity and waste limitation. These benefits are amplified when enzymatic processes are conducted in a cascade in combination with novel bond-forming strategies. In this article, we report a highly diastereoselective synthesis of MK-1454, a potent agonist of the stimulator of interferon gene (STING) signaling pathway. The synthesis begins with the asymmetric construction of two fluoride-bearing deoxynucleotides. The routes were designed for maximum convergency and selectivity, relying on the same benign electrophilic fluorinating reagent. From these complex subunits, four enzymes are used to construct the two bridging thiophosphates in a highly selective, high yielding cascade process. Critical to the success of this reaction was a thorough understanding of the role transition metals play in bond formation.
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