Santra Abhishek, Li Yanhong, Ghosh Tamashree, Li Riyao, Yu Hai, Chen Xi
Department of Chemistry, University of California, One Shields Avenue, Davis, California 95616, United States.
ACS Catal. 2019 Jan 4;9(1):211-215. doi: 10.1021/acscatal.8b04231. Epub 2018 Dec 5.
O-GalNAc glycans or mucin-type glycans are common protein post-translational modifications in eukaryotes. Core 2 O-GalNAc glycans are branched structures that are broadly distributed in glycoproteins and mucins of all types of cells. To better understand their biological roles, it is important to obtain structurally defined Core 2 O-GalNAc glycans. We present here regioselective one-pot multienzyme (OPME) chemoenzymatic strategies to systematically access a diverse array of sialyl Core 2 glycans. Regioselectivity can be achieved by using OPME systems containing a glycosyltransferase with restricted acceptor specificity or by differentiating the branches using altered glycosylation sequences. This work provides a general regioselective strategy to access diverse Core 2 O-GalNAc glycans which can be extended for the synthesis of other complex branched glycans.
O-连接的N-乙酰半乳糖胺聚糖或粘蛋白型聚糖是真核生物中常见的蛋白质翻译后修饰。核心2 O-连接的N-乙酰半乳糖胺聚糖是分支结构,广泛分布于所有类型细胞的糖蛋白和粘蛋白中。为了更好地理解它们的生物学作用,获得结构明确的核心2 O-连接的N-乙酰半乳糖胺聚糖很重要。我们在此展示区域选择性一锅多酶(OPME)化学酶促策略,以系统地获得多种唾液酸化核心2聚糖。可以通过使用含有受体特异性受限的糖基转移酶的OPME系统或通过使用改变的糖基化序列区分分支来实现区域选择性。这项工作提供了一种通用的区域选择性策略,以获得多种核心2 O-连接的N-乙酰半乳糖胺聚糖,该策略可扩展用于合成其他复杂的分支聚糖。