Zou Ruyi, Xu Xiangyu, Li Fuchuan
National Glycoengineering Research Center, Shandong Key Laboratory of Carbohydrate Chemistry and Glycobiology and State Key Laboratory of Microbial Technology, Shandong University, 72 Binhai Rd, Qingdao, 266237, People's Republic of China.
J Cell Sci. 2025 Jan 15;138(2). doi: 10.1242/jcs.263489. Epub 2025 Jan 23.
Glycosaminoglycans (GAGs), as animal polysaccharides, are linked to proteins to form various types of proteoglycans. Bacterial GAG lyases are not only essential enzymes that spoilage bacteria use for the degradation of GAGs, but also valuable tools for investigating the biological function and potential therapeutic applications of GAGs. The ongoing discovery and characterization of novel GAG lyases has identified an increasing number of lyases suitable for functional studies and other applications involving GAGs, which include oligosaccharide sequencing, detection and removal of specific glycan chains, clinical drug development and the design of novel biomaterials and sensors, some of which have not yet been comprehensively summarized. GAG lyases can be classified into hyaluronate lyases, chondroitinases and heparinases based on their substrate spectra, and their functional applications are mainly determined by their substrates, with different lyases exhibiting differing substrate selectivity and preferences. It is thus necessary to understand the properties of the available enzymes to determine strategies for their functional application. Building on previous studies and reviews, this Review highlights small yet crucial differences among or within the various GAG lyases to aid in optimizing their use in future studies. To clarify ideas and strategies for further research, we also discuss several traditional and novel applications of GAG lyases.
糖胺聚糖(GAGs)作为动物多糖,与蛋白质相连形成各种类型的蛋白聚糖。细菌GAG裂解酶不仅是腐败细菌用于降解GAGs的必需酶,也是研究GAGs生物学功能和潜在治疗应用的有价值工具。新型GAG裂解酶的不断发现和表征,已鉴定出越来越多适用于功能研究和其他涉及GAGs应用的裂解酶,这些应用包括寡糖测序、特定聚糖链的检测和去除、临床药物开发以及新型生物材料和传感器的设计,其中一些尚未得到全面总结。GAG裂解酶可根据其底物谱分为透明质酸裂解酶、软骨素酶和肝素酶,其功能应用主要由其底物决定,不同的裂解酶表现出不同的底物选择性和偏好。因此,有必要了解现有酶的特性,以确定其功能应用策略。基于先前的研究和综述,本综述强调了各种GAG裂解酶之间或内部的微小但关键的差异,以帮助在未来研究中优化其使用。为了阐明进一步研究的思路和策略,我们还讨论了GAG裂解酶的几种传统和新型应用。