School of Pharmacy , Xi'an Jiaotong University , Xi'an , 710061 , People's Republic of China.
Anal Chem. 2019 Sep 17;91(18):11932-11937. doi: 10.1021/acs.analchem.9b02736. Epub 2019 Sep 3.
Glycosylation is one of the most important post-translational modifications (PTMs) with essential physiological functions, including protein folding, cell signaling, and immune response. Thus, various qualitative and quantitative glycomics analysis strategies have been developed. Recently, the isobaric multiplex reagents for carbonyl-containing compound (SUGAR) tag was developed for quantitative glycomics with multiplexing capacity and increased reporter ion yield. To further improve quantification efficiency and enable quantifying low-abundance species, the mass defect based triplex SUGAR (SUGAR) tag has been designed. In addition, we also introduce additional reaction sites for SUGAR at the terminal sialic acid by periodate oxidation of the polyhydroxy chain to extend the mass difference and lower the requirement for resolving power. As a result, SUGAR tags show complete labeling efficiency, improved fragmentation pattern, and accurate quantification. Moreover, the quantitative performance of the SUGAR tags in a complex system has been systematically evaluated and demonstrated reliable results.
糖基化是最重要的翻译后修饰(PTMs)之一,具有重要的生理功能,包括蛋白质折叠、细胞信号转导和免疫反应。因此,已经开发了各种定性和定量的糖组学分析策略。最近,用于含羰基化合物(SUGAR)标签的等压多重试剂已被开发用于具有多重化能力和增加报告离子产率的定量糖组学。为了进一步提高定量效率并能够定量低丰度物种,已经设计了基于质量缺陷的三聚体 SUGAR(SUGAR)标签。此外,我们还通过多羟基链的高碘酸盐氧化在唾液酸的末端添加了用于 SUGAR 的额外反应位点,以扩展质量差异并降低分辨率的要求。结果,SUGAR 标签显示出完全的标记效率、改进的片段模式和准确的定量。此外,还系统地评估了 SUGAR 标签在复杂体系中的定量性能,并证明了可靠的结果。