糖生物学
聚糖
周质间隙
核苷酸糖
糖基化
重组工程
生物
糖基转移酶
生物化学
糖组
计算生物学
大肠杆菌
酶
基因
糖蛋白
作者
Steven D. Kelly,Nam Ha Duong,Jeremy T. Nothof,Todd L. Lowary,Chris Whitfield
标识
DOI:10.1073/pnas.2402554121
摘要
Cell surface glycans are major drivers of antigenic diversity in bacteria. The biochemistry and molecular biology underpinning their synthesis are important in understanding host-pathogen interactions and for vaccine development with emerging chemoenzymatic and glycoengineering approaches. Structural diversity in glycostructures arises from the action of glycosyltransferases (GTs) that use an immense catalog of activated sugar donors to build the repeating unit and modifying enzymes that add further heterogeneity. Classical Leloir GTs incorporate α- or β-linked sugars by inverting or retaining mechanisms, depending on the nucleotide sugar donor. In contrast, the mechanism of known ribofuranosyltransferases is confined to β-linkages, so the existence of α-linked ribofuranose in some glycans dictates an alternative strategy. Here, we use
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