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糖基微阵列:从构建到应用的故事

The Glycan Microarray Story from Construction to Applications.

机构信息

National Creative Research Initiative Center for Biofunctional Molecules, Department of Chemistry, Yonsei University , Seoul 03722, Korea.

出版信息

Acc Chem Res. 2017 Apr 18;50(4):1069-1078. doi: 10.1021/acs.accounts.7b00043. Epub 2017 Mar 17.

Abstract

Not only are glycan-mediated binding processes in cells and organisms essential for a wide range of physiological processes, but they are also implicated in various pathological processes. As a result, elucidation of glycan-associated biomolecular interactions and their consequences is of great importance in basic biological research and biomedical applications. In 2002, we and others were the first to utilize glycan microarrays in efforts aimed at the rapid analysis of glycan-associated recognition events. Because they contain a number of glycans immobilized in a dense and orderly manner on a solid surface, glycan microarrays enable multiple parallel analyses of glycan-protein binding events while utilizing only small amounts of glycan samples. Therefore, this microarray technology has become a leading edge tool in studies aimed at elucidating roles played by glycans and glycan binding proteins in biological systems. In this Account, we summarize our efforts on the construction of glycan microarrays and their applications in studies of glycan-associated interactions. Immobilization strategies of functionalized and unmodified glycans on derivatized glass surfaces are described. Although others have developed immobilization techniques, our efforts have focused on improving the efficiencies and operational simplicity of microarray construction. The microarray-based technology has been most extensively used for rapid analysis of the glycan binding properties of proteins. In addition, glycan microarrays have been employed to determine glycan-protein interactions quantitatively, detect pathogens, and rapidly assess substrate specificities of carbohydrate-processing enzymes. More recently, the microarrays have been employed to identify functional glycans that elicit cell surface lectin-mediated cellular responses. Owing to these efforts, it is now possible to use glycan microarrays to expand the understanding of roles played by glycans and glycan binding proteins in biological systems.

摘要

不仅糖基介导的细胞和生物体内的结合过程对广泛的生理过程至关重要,而且它们还与各种病理过程有关。因此,阐明糖基相关生物分子相互作用及其后果在基础生物学研究和生物医学应用中非常重要。2002 年,我们和其他人率先利用糖基微阵列快速分析糖基相关识别事件。由于它们在固体表面上以密集和有序的方式固定了许多聚糖,糖基微阵列能够在仅使用少量聚糖样品的情况下同时分析多个糖蛋白结合事件。因此,这种微阵列技术已成为阐明糖和糖结合蛋白在生物系统中作用的领先工具。在本报告中,我们总结了我们在糖基微阵列的构建及其在糖基相关相互作用研究中的应用方面的努力。描述了功能化和未修饰聚糖在衍生玻璃表面上的固定化策略。虽然其他人已经开发了固定化技术,但我们的努力集中在提高微阵列构建的效率和操作简单性上。基于微阵列的技术已被广泛用于快速分析蛋白质的聚糖结合特性。此外,糖基微阵列还用于定量测定糖蛋白相互作用、检测病原体以及快速评估糖基化酶的底物特异性。最近,微阵列还被用于鉴定诱导细胞表面凝集素介导的细胞反应的功能性聚糖。由于这些努力,现在可以使用糖基微阵列来扩展对糖和糖结合蛋白在生物系统中作用的理解。

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