Ministry of Education Key Laboratory of Systems Biomedicine, Shanghai Center for Systems Biomedicine-SCSB, Shanghai Jiao Tong University, 800 Dong Chuan Road, Minhang, Shanghai 200240, China.
Molecules. 2013 Jun 19;18(6):7145-59. doi: 10.3390/molecules18067145.
Click chemistry is a powerful chemical reaction with excellent bioorthogonality features: biocompatible, rapid and highly specific in biological environments. For glycobiology, bioorthogonal click chemistry has created a new method for glycan non-invasive imaging in living systems, selective metabolic engineering, and offered an elite chemical handle for biological manipulation and glycomics studies. Especially the [3 + 2] dipolar cycloadditions of azides with strained alkynes and the Staudinger ligation of azides and triarylphosphines have been widely used among the extant click reactions. This review focuses on the azide-based bioorthogonal click chemistry, describing the characteristics and development of these reactions, introducing some recent applications in glycobiology research, especially in glycan metabolic engineering, including glycan non-invasive imaging, glycomics studies and viral surface manipulation for drug discovery as well as other applications like activity-based protein profiling and carbohydrate microarrays.
在生物环境中具有生物相容性、快速和高度特异性。对于糖生物学,生物正交点击化学为聚糖在活系统中的非侵入性成像、选择性代谢工程创造了一种新方法,并为生物操作和糖组学研究提供了一种优秀的化学处理方法。特别是叠氮化物与张力炔烃的[3+2]偶极环加成反应和叠氮化物与三芳基膦的施蒂德格连接反应在现有的点击反应中得到了广泛应用。本综述重点介绍基于叠氮化物的生物正交点击化学,描述了这些反应的特点和发展,介绍了糖生物学研究中的一些最新应用,特别是在聚糖代谢工程中的应用,包括聚糖非侵入性成像、糖组学研究和病毒表面操作用于药物发现以及其他应用,如基于活性的蛋白质谱分析和碳水化合物微阵列。