A Radical Activation Strategy for Versatile and Stereoselective N‐Glycosylation

Author:

Ding Wenyan12,Chen Xinyu1,Sun Zuyao1,Luo Jiaxin1,Wang Shiping3,Lu Qingqing1,Ma Jialu1,Zhao Chongxin4,Chen Fen‐Er156,Xu Chunfa17ORCID

Affiliation:

1. Institute of Pharmaceutical Science and Technology College of Chemistry, Fuzhou University Fuzhou 350108 China

2. Qingyuan Innovation Laboratory Quanzhou 362801 China

3. National Engineering Research Center of Chemical Fertilizer Catalyst College of Chemical Engineering Fuzhou University Fuzhou 350108 China

4. Jiangsu Jiyi New Material CO., LTD Xuzhou 221700 China

5. Engineering Center of Catalysis and Synthesis for Chiral Molecules Department of Chemistry Fudan University Shanghai 200433 China

6. Shanghai Engineering Center of Industrial Asymmetric Catalysis for Chiral Drugs Fudan University Shanghai 200433 China

7. Key Laboratory of Organofluorine Chemistry Shanghai Institute of Organic Chemistry Chinese Academy of Sciences Shanghai 200032 China

Abstract

AbstractPrevious N‐glycosylation approaches have predominately involved acidic conditions, facing challenges of low stereoselectivity and limited scope. Herein, we introduce a radical activation strategy that enables versatile and stereoselective N‐glycosylation using readily accessible glycosyl sulfinate donors under basic conditions and exhibits exceptional tolerance towards various N‐aglycones containing alkyl, aryl, heteroaryl and nucleobase functionalities. Preliminary mechanistic studies indicate a pivotal role of iodide, which orchestrates the formation of a glycosyl radical from the glycosyl sulfinate and subsequent generation of the key intermediate, a configurationally well‐defined glycosyl iodide, which is subsequently attacked by an N‐aglycone in a stereospecific SN2 manner to give the desired N‐glycosides. An alternative route involving the coupling of a glycosyl radical and a nitrogen‐centered radical is also proposed, affording the exclusive 1,2‐trans product. This novel approach promises to broaden the synthetic landscape of N‐glycosides, offering a powerful tool for the construction of complex glycosidic structures under mild conditions.

Funder

National Natural Science Foundation of China

Fuzhou University

Publisher

Wiley

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