化学
聚糖
糖蛋白
产量(工程)
生物化学
脱氢丙氨酸
翻译后修饰
糖基化
组合化学
化学合成
糖基
二硫键
生物合成
催化作用
立体化学
碳水化合物构象
共价键
蛋白质结构
作者
Haoruo Shangguan,Bingcheng Wei,Tianyun Guo,Farong Ye,Xinliang Liu,Dalovai Purnachandar,Guofeng Zhang,Xiaolei Wang,Ping Wang
摘要
The structure of N -linked glycans regulates protein folding, stability, conformation, and fundamental cellular functions. However, current biosynthesis methods yield heterogeneous glycoforms, and chemical total synthesis is prohibitively step-intensive, significantly hindering functional studies of glycan structure–function relationships, preventing detailed studies of the functions of N- glycans on proteins. To overcome these limitations, a novel, streamlined strategy for the direct single-step synthesis of glycoproteins with structurally defined N- glycans has been developed. This method utilizes visible-light-mediated photoredox catalysis in phosphate-buffered saline (PBS) to enable the straightforward addition of N- glycosyl carbamoyl radicals, generated from N- glycosyl-1,4-dihydropyridines (DHPs), to the dehydroalanine (Dha) double bond on proteins. Under mild conditions, this radical addition provides direct access to well-defined N- linked glycoproteins, such as small ubiquitin-related modifier 2 (SUMO2), phosphate-transport protein (PstS), interleukin-1 alpha (IL-1α), and β-lactoglobulin with two disulfide bonds. This streamlined approach promises accessible, well-defined glycoproteins for high-throughput structure–function studies.
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