College of Life Science, Northwest University, Xi'an 710069, China.
Shaanxi Natural Carbohydrate Resource Engineering Research Center, College of Food Science and Technology, Northwest University, Xi'an 710069, China.
Anal Chem. 2020 Sep 1;92(17):11644-11653. doi: 10.1021/acs.analchem.0c01410. Epub 2020 Aug 10.
The structure of chondroitin sulfate oligosaccharides (CSOs), especially their sulfation pattern, has been found to be closely related with many biological pathways and diseases. However, detailed functional analysis such as their interaction with glycan binding proteins (GBPs) has been lagging, presumably due to the unavailability of well-defined, diverse structures. Besides challenging chemical and enzymatic synthesis, this is also due to the challenges in their purification at the isomer level and structural analysis owing to their instability, structural complexity, and low mass spectrometry detection sensitivity. Herein, we first used recycling preparative HPLC to separate and purify shark CS tetrasaccharide component labeled by a bifunctional fluorescent linker 2-amino--(2-aminoethyl)benzamide (AEAB) at the isomer level. Then, each isomer was derivatized through a multistage procedure including -acetylation, carboxyl amidation, permethylation, and desulfation with silylating reagent. Structural analysis of each derivatized isomer was performed with ESI-MS in positive ion mode. A total of 16 isomers of CSO-AEAB were isolated, with a minimum mass component of 0.007 mg and a maximum mass component of 17.53 mg, of which 10 isomers (>90 μg) were structurally analyzed. This preparation and structure analysis of CSOs lay the foundation for further study of the structure-activity relationship of CSOs.
硫酸软骨素寡糖(CSOs)的结构,尤其是其硫酸化模式,被发现与许多生物途径和疾病密切相关。然而,详细的功能分析,如它们与糖结合蛋白(GBPs)的相互作用,一直滞后,推测是由于缺乏明确、多样的结构。除了具有挑战性的化学和酶促合成外,这也是由于它们在异构体水平上的不稳定、结构复杂性和低质谱检测灵敏度,导致其在分离和结构分析方面存在困难。在此,我们首先使用循环制备高效液相色谱法(recycling preparative HPLC)对用双功能荧光接头 2-氨基-(2-氨基乙基)苯甲酰胺(AEAB)标记的鲨鱼 CS 四糖成分进行异构体水平的分离和纯化。然后,通过包括乙酰化、羧基酰胺化、全甲基化和用硅烷基化试剂进行脱硫的多步程序对每个异构体进行衍生化。用电喷雾质谱(ESI-MS)在正离子模式下对每个衍生化异构体进行结构分析。共分离出 16 种 CSO-AEAB 异构体,最小质量组分为 0.007 mg,最大质量组分为 17.53 mg,其中 10 种异构体(>90 μg)进行了结构分析。CSOs 的这种制备和结构分析为进一步研究 CSOs 的结构-活性关系奠定了基础。