Wang Chengjian, Wu Zhiyu, Yuan Jiangbei, Wang Bo, Zhang Ping, Zhang Ying, Wang Zhongfu, Huang Linjuan
Educational Ministry Key Laboratory of Resource Biology and Biotechnology in Western China, College of Life Science, Northwest University , Xi'an 710069, China.
J Proteome Res. 2014 Feb 7;13(2):372-84. doi: 10.1021/pr4010647. Epub 2013 Dec 2.
Fast, sensitive, and simple methods for quantitative analysis of disparities in glycan expression between different biological samples are essential for studies of protein glycosylation patterns (glycomics) and the search for disease glycan biomarkers. Relative quantitation of glycans based on stable isotope labeling combined with mass spectrometric detection represents an emerging and promising technique. However, this technique is undermined by the complexity of mass spectra of isotope-labeled glycans caused by the presence of multiple metal ion adduct signals, which result in a decrease of detection sensitivity and an increase of difficulties in data interpretation. Herein we report a simplified quantitative glycomics strategy, which features nonreductive isotopic labeling of reducing glycans with either nondeuterated (d0-) or deuterated (d5-) Girard's reagent P (GP) without salts introduced and simplified mass spectrometric profiles of d0- and d5-GP derivatives of neutral glycans as molecular ions without complex metal ion adducts, allowing rapid and sensitive quantitative comparison between different glycan samples. We have obtained optimized GP-labeling conditions and good quantitation linearity, reproducibility, and accuracy of data by the method. Its excellent applicability was validated by comparatively quantitative analysis of the neutral N-glycans released from bovine and porcine immunoglobulin G as well as of those from mouse and rat sera. Additionally, we have revealed the potential of this strategy for the high-sensitivity analysis of sialylated glycans as GP derivatives, which involves neutralization of the carboxyl group of sialic acid by chemical derivatization.
快速、灵敏且简便的方法用于定量分析不同生物样品间聚糖表达差异,对于蛋白质糖基化模式(糖组学)研究及疾病聚糖生物标志物的寻找至关重要。基于稳定同位素标记结合质谱检测的聚糖相对定量是一项新兴且有前景的技术。然而,由于存在多个金属离子加合物信号,同位素标记聚糖的质谱复杂性削弱了该技术,导致检测灵敏度降低且数据解读难度增加。在此,我们报告一种简化的定量糖组学策略,其特点是用未氘代(d0-)或氘代(d5-)的吉拉德试剂P(GP)对还原聚糖进行非还原同位素标记,不引入盐,且中性聚糖的d0-和d5-GP衍生物作为分子离子的质谱图简化,无复杂金属离子加合物,从而能够在不同聚糖样品间进行快速灵敏的定量比较。我们通过该方法获得了优化的GP标记条件以及良好的数据定量线性、重现性和准确性。通过对牛和猪免疫球蛋白G释放的中性N-聚糖以及小鼠和大鼠血清中的中性N-聚糖进行比较定量分析,验证了其出色的适用性。此外,我们还揭示了该策略作为GP衍生物对唾液酸化聚糖进行高灵敏度分析的潜力,其中涉及通过化学衍生化中和唾液酸的羧基。