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糖基转移酶作为研究聚糖生物学的多功能工具。

Glycosyltransferases as versatile tools to study the biology of glycans.

作者信息

Kofsky Joshua M, Babulic Jonathan L, Boddington Marie E, De León González Fabiola V, Capicciotti Chantelle J

机构信息

Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, ON K7L 3N6, Canada.

Department of Biomedical and Molecular Sciences, Queen's University, 18 Stuart Street, Kingston, ON K7L 2V7, Canada.

出版信息

Glycobiology. 2023 Dec 25;33(11):888-910. doi: 10.1093/glycob/cwad092.

Abstract

All cells are decorated with complex carbohydrate structures called glycans that serve as ligands for glycan-binding proteins (GBPs) to mediate a wide range of biological processes. Understanding the specific functions of glycans is key to advancing an understanding of human health and disease. However, the lack of convenient and accessible tools to study glycan-based interactions has been a defining challenge in glycobiology. Thus, the development of chemical and biochemical strategies to address these limitations has been a rapidly growing area of research. In this review, we describe the use of glycosyltransferases (GTs) as versatile tools to facilitate a greater understanding of the biological roles of glycans. We highlight key examples of how GTs have streamlined the preparation of well-defined complex glycan structures through chemoenzymatic synthesis, with an emphasis on synthetic strategies allowing for site- and branch-specific display of glyco-epitopes. We also describe how GTs have facilitated expansion of glyco-engineering strategies, on both glycoproteins and cell surfaces. Coupled with advancements in bioorthogonal chemistry, GTs have enabled selective glyco-epitope editing of glycoproteins and cells, selective glycan subclass labeling, and the introduction of novel biomolecule functionalities onto cells, including defined oligosaccharides, antibodies, and other proteins. Collectively, these approaches have contributed great insight into the fundamental biological roles of glycans and are enabling their application in drug development and cellular therapies, leaving the field poised for rapid expansion.

摘要

所有细胞都装饰有称为聚糖的复杂碳水化合物结构,这些聚糖作为聚糖结合蛋白(GBP)的配体,介导广泛的生物过程。了解聚糖的特定功能是增进对人类健康和疾病理解的关键。然而,缺乏方便易用的工具来研究基于聚糖的相互作用一直是糖生物学中的一个决定性挑战。因此,开发化学和生化策略来解决这些限制一直是一个快速发展的研究领域。在这篇综述中,我们描述了糖基转移酶(GT)作为通用工具的应用,以促进对聚糖生物学作用的更深入理解。我们重点介绍了GT如何通过化学酶促合成简化了定义明确的复杂聚糖结构的制备的关键示例,重点是允许糖表位进行位点和分支特异性展示的合成策略。我们还描述了GT如何促进糖工程策略在糖蛋白和细胞表面上的扩展。结合生物正交化学的进展,GT实现了对糖蛋白和细胞的选择性糖表位编辑、选择性聚糖亚类标记,以及将新型生物分子功能引入细胞,包括特定的寡糖、抗体和其他蛋白质。总的来说,这些方法为聚糖的基本生物学作用提供了深刻的见解,并使其能够应用于药物开发和细胞治疗,使该领域有望迅速扩展。

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