Direct radical functionalization of native sugars.

Symplectic ID
2009372
Source
Europe PubMed Central
Last Synced with Symplectic
Monday, 14 September, 2026 - 15:02
DOI
10.1038/s41586-024-07548-0
Publication Date
Monday, 1 July, 2024
First Page
319
Last Page
327
Keywords
Free Radicals
Oligosaccharides
Indicators and Reagents
Glycosylation
Stereoisomerism
Light
Chemistry Techniques, Synthetic
Sugars
Authors
Jiang, Y
Wei, Y
Zhou, Q-Y
Sun, G-Q
Fu, X-P
Levin, N
Zhang, Y
Liu, W-Q
Song, N
Mohammed, S
Davis, BG
Koh, MJ
Authors list has been truncated
0
Editors list has been truncated
Abstract
Naturally occurring (native) sugars and carbohydrates contain numerous hydroxyl groups of similar reactivity<sup>1,2</sup>. Chemists, therefore, rely typically on laborious, multi-step protecting-group strategies<sup>3</sup> to convert these renewable feedstocks into reagents (glycosyl donors) to make glycans. The direct transformation of native sugars to complex saccharides remains a notable challenge. Here we describe a photoinduced approach to achieve site- and stereoselective chemical glycosylation from widely available native sugar building blocks, which through homolytic (one-electron) chemistry bypasses unnecessary hydroxyl group masking and manipulation. This process is reminiscent of nature in its regiocontrolled generation of a transient glycosyl donor, followed by radical-based cross-coupling with electrophiles on activation with light. Through selective anomeric functionalization of mono- and oligosaccharides, this protecting-group-free \'cap and glycosylate\' approach offers straightforward access to a wide array of metabolically robust glycosyl compounds. Owing to its biocompatibility, the method was extended to the direct post-translational glycosylation of proteins.
ISSN
0028-0836
Journal Title
Nature
eISSN
1476-4687
Volume
631
Issue
8020
ID at Source
MED:38898275
Publication Status
Published
Open access
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