Zhang Liyuan, Wang Liheng, Wang Lili, Dong Peipei, Liu Hezhen, Zhao Yanyan
Dalian Medical University, Dalian 116044, China.
Orthopaedic Rehabilitation Center, the Second Hospital of Dalian, Dalian 116001, China.
Se Pu. 2019 Mar 8;37(3):279-286. doi: 10.3724/SP.J.1123.2018.11015.
The application of boronic acid affinity chromatography to glycoprotein/glycopeptide enrichment is increasingly maturing. The enrichment selectivity, biocompatibility, and facile operation protocol are key aspects in efficient enrichment methods. In this work, a novel triazo-cyanide boronic acid functionalized material (TCNBA) was prepared using triazo-cyanide click chemistry. The TCNBA was proved to be successfully synthesized through infrared ray (IR) characterization. Subsequently, the glycopeptide/glycoprotein enrichment selectivity of the TCNBA was evaluated. Matrix-assisted laser desorption/ionization time-of-flight mass (MALDI-TOF MS) was employed for the glycopeptide enrichment selectivity evaluation. Taking the digestion of horseradish peroxidase (HRP) and immunoglobulin G (IgG) as samples, 13 and 11 glycopeptides could be characterized with improved signals after TCNBA enrichment, respectively. High abundance non-glycopeptides could be removed effectively from the eluting fraction. This result indicates the high glycopeptide enrichment selectivity of TCNBA. In addition, a mixture of HRP and bovine serum albumin (BSA) enzymatic solution (1:10, amount of substance ratio) was utilized as a sample, and five glycopeptide signals could be identified following enrichment. To evaluate the glycoprotein enrichment selectivity, sodium salt-polyacrylamide gel electrophoresis (SDS-PAGE) was adopted as an evaluation method. Mixtures of HRP, IgG, BSA, and ribonuclease B (RNaseB) proteins were employed as samples, and the results demonstrated that TCNBA had a high glycoprotein enrichment selectivity. The application of TCNBA to the analysis of a real biosample was also evaluated using human plasma. The results indicated the TCNBA could be utilized in large-scale glycoprotein analysis.
硼酸亲和色谱法在糖蛋白/糖肽富集方面的应用日益成熟。富集选择性、生物相容性和简便的操作流程是高效富集方法的关键要素。在本工作中,采用三氮唑 - 氰化物点击化学制备了一种新型的三氮唑 - 氰基硼酸功能化材料(TCNBA)。通过红外(IR)表征证明TCNBA已成功合成。随后,评估了TCNBA对糖肽/糖蛋白的富集选择性。采用基质辅助激光解吸/电离飞行时间质谱(MALDI - TOF MS)来评估糖肽富集选择性。以辣根过氧化物酶(HRP)和免疫球蛋白G(IgG)的酶解产物为样品,经TCNBA富集后,分别可鉴定出13个和11个糖肽,信号得到增强。高丰度非糖肽可从洗脱组分中有效去除。这一结果表明TCNBA具有高糖肽富集选择性。此外,以HRP和牛血清白蛋白(BSA)酶解溶液混合物(物质的量比为1:10)为样品,富集后可鉴定出五个糖肽信号。为评估糖蛋白富集选择性,采用钠盐 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)作为评估方法。以HRP、IgG、BSA和核糖核酸酶B(RNaseB)蛋白的混合物为样品,结果表明TCNBA具有高糖蛋白富集选择性。还利用人血浆评估了TCNBA在实际生物样品分析中的应用。结果表明TCNBA可用于大规模糖蛋白分析。