核苷
另一个
立体选择性
糖基化
组合化学
化学
司他夫定
对映选择合成
立体异构
核苷类似物
立体化学
碱基
人类免疫缺陷病毒(HIV)
生物化学
生物
DNA
催化作用
病毒学
抗逆转录病毒疗法
病毒载量
作者
Qi Wang,Jiayi Mu,Jie Zeng,Linxi Wan,Yangyang Zhong,Qiuhong Li,Yitong Li,Huijing Wang,Fen-Er Chen
标识
DOI:10.1038/s41467-022-35610-w
摘要
β-Nucleosides and their analogs are dominant clinically-used antiviral and antitumor drugs. α-Nucleosides, the anomers of β-nucleosides, exist in nature and have significant potential as drugs or drug carriers. Currently, the most widely used methods for synthesizing β- and α-nucleosides are via N-glycosylation and pentose aminooxazoline, respectively. However, the stereoselectivities of both methods highly depend on the assisting group at the C2' position. Herein, we report an additive-controlled stereodivergent iodocyclization method for the selective synthesis of α- or β-nucleosides. The stereoselectivity at the anomeric carbon is controlled by the additive (NaI for β-nucleosides; PPh3S for α-nucleosides). A series of β- and α-nucleosides are prepared in high yields (up to 95%) and stereoselectivities (β:α up to 66:1, α:β up to 70:1). Notably, the introduced iodine at the C2' position of the nucleoside is readily functionalized, leading to multiple structurally diverse nucleoside analogs, including stavudine, an FDA-approved anti-HIV agent, and molnupiravir, an FDA-approved anti-SARS-CoV-2 agent.
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