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BODIPY 标记唾液酸的合成及其作为唾液酸转移酶底物用于直接检测 N- 和 O-连接糖蛋白末端半乳糖

Development of BODIPY labelled sialic acids as sialyltransferase substrates for direct detection of terminal galactose on N- and O-linked glycans.

机构信息

Department of Chemistry and Biology, Ryerson University, 661 University Ave 11th Floor, Toronto, ON M5G1M1, Canada; Current Address. PlantForm Corporation, 1920 Yonge Street, Suite 200, Toronto, ON M4S3E2, Canada.

Department of Chemistry and Biology, Ryerson University, 661 University Ave 11th Floor, Toronto, ON M5G1M1, Canada.

出版信息

Carbohydr Res. 2021 Feb;500:108249. doi: 10.1016/j.carres.2021.108249. Epub 2021 Jan 25.

Abstract

Glycans on proteins and cell surfaces are useful biomarkers for determining functional interactions with glycan binding proteins, potential disease states, or indeed level of differentiation. The ability to rapidly and sensitively detect or tag specific glycans on proteins provides a diagnostic tool with wide application in chemical glycobiology. The monosaccharide N-acetylneuraminic acid (sialic acid) is a key player in these interactions and the manipulation and control of sialylation levels has been an important research focus, particularly in the development of therapeutic proteins. Using sialyltransferases to tag specific glycans provides a rapid means of determining what types of glycans are present. We have synthesized two variants of sialic acid carrying the fluorophore BODIPY (4,4 -Difluoro-4-boro-3a,4a-diaza-s-indacene) and examined its use with several different sialyltransferases on a variety of protein substrates and cell surface glycans. Our data show that there are significant differences between various enzymes ability to transfer the labelled sialic acids, and that the type of N-glycan and target protein strongly influences this activity.

摘要

蛋白质和细胞表面的聚糖是确定与聚糖结合蛋白的功能相互作用、潜在疾病状态或分化程度的有用生物标志物。快速、灵敏地检测或标记蛋白质上特定聚糖的能力为化学糖生物学提供了一种广泛应用的诊断工具。单糖 N-乙酰神经氨酸(唾液酸)是这些相互作用中的关键参与者,对唾液酸化水平的操纵和控制一直是一个重要的研究重点,特别是在治疗性蛋白质的开发中。使用唾液酸转移酶标记特定的聚糖提供了一种快速确定存在哪些类型聚糖的方法。我们合成了两种带有荧光团 BODIPY(4,4 -二氟-4-硼-3a,4a-二氮杂-s-茚)的唾液酸变体,并在各种蛋白质底物和细胞表面糖上研究了几种不同的唾液酸转移酶对其的使用。我们的数据表明,各种酶转移标记的唾液酸的能力存在显著差异,并且 N-聚糖的类型和靶蛋白强烈影响这种活性。

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