Zhong Xuefei, Chen Zhengwei, Snovida Sergei, Liu Yan, Rogers John C, Li Lingjun
†School of Pharmacy, University of Wisconsin, Madison, 777 Highland Avenue, Madison, Wisconsin 53705, United States.
‡Department of Chemistry, University of Wisconsin, Madison, 1101 University Avenue, Madison, Wisconsin 53706, United States.
Anal Chem. 2015 Jul 7;87(13):6527-34. doi: 10.1021/acs.analchem.5b01835. Epub 2015 Jun 11.
Recently developed carbonyl-reactive aminoxy tandem mass tag (aminoxyTMT) reagents enable multiplexed characterization and quantitative comparison of structurally complex glycans between different biological samples. Compared to some previously reported isotopic labeling strategies for glycans, the use of the aminoxyTMT method features a simple labeling procedure, excellent labeling efficiency, and reduced spectral complexity at the MS(1) level. Presence of the tertiary amine functionality in the reporter region of the aminoxyTMT labels leads to increased ionization efficiency of the labeled glycans thus improving electrospray ionization (ESI)-mass spectrometry (MS) detection sensitivity. The use of the labeling reagent also makes electrophoretic separation of the labeled neutral and acidic glycans feasible. In this work, we characterized the ESI and collision induced dissociation (CID) behavior of the aminoxyTMT-labeled neutral and sialylated glycans. For the high-mannose N-glycans and small sialylated oligosaccharides, CID fragmentation of M + Na + H provides the most informative MS(2) spectra for both quantitative and qualitative analysis. For complex N-glycans, MS(3) of the protonated Y1(H) ion can be used for relative quantification without interference from the HexNAc fragments. Online capillary electrophoresis (CE)-ESI-MS/MS analyses of multiplexed aminoxyTMT-labeled human milk oligosaccharides (HMOs) and different types of N-glycans released from glycoprotein standards were demonstrated. Improved resolution and quantification accuracy of the labeled HMO isomers was achieved by coupling CE with traveling wave ion mobility (TWIM)-CID-MS/MS. N-Glycans released from human serum protein digests were labeled with six-plex aminoxyTMT and subjected to CE-ESI-MS/pseudo-MS(3) analysis, which demonstrated the potential utility of this glycan relative quantification platform for more complex biological samples.
最近开发的羰基反应性氨氧基串联质量标签(aminoxyTMT)试剂能够对不同生物样品之间结构复杂的聚糖进行多重表征和定量比较。与一些先前报道的聚糖同位素标记策略相比,aminoxyTMT方法的使用具有标记过程简单、标记效率高以及在MS(1)水平上光谱复杂性降低的特点。aminoxyTMT标签报告区中叔胺官能团的存在导致标记聚糖的电离效率提高,从而提高了电喷雾电离(ESI)-质谱(MS)检测灵敏度。标记试剂的使用还使标记的中性和酸性聚糖的电泳分离成为可能。在这项工作中,我们表征了aminoxyTMT标记的中性和唾液酸化聚糖的ESI和碰撞诱导解离(CID)行为。对于高甘露糖型N-聚糖和小的唾液酸化寡糖,M + Na + H的CID碎片化提供了用于定量和定性分析的最丰富信息的MS(2)光谱。对于复杂的N-聚糖,质子化Y1(H)离子的MS(3)可用于相对定量,而不受HexNAc片段的干扰。展示了对多重aminoxyTMT标记的人乳寡糖(HMO)和从糖蛋白标准品释放的不同类型N-聚糖进行在线毛细管电泳(CE)-ESI-MS/MS分析。通过将CE与行波离子迁移率(TWIM)-CID-MS/MS联用,实现了标记的HMO异构体分辨率和定量准确性的提高。用人血清蛋白消化物释放的N-聚糖用六重aminoxyTMT标记,并进行CE-ESI-MS/伪MS(3)分析,这证明了该聚糖相对定量平台对更复杂生物样品的潜在实用性。