Department of Chemistry, University of California , One Shields Avenue, Davis, California, 95616, United States.
Anal Chem. 2013 Sep 17;85(18):8585-93. doi: 10.1021/ac4009995. Epub 2013 Aug 30.
Studies aimed toward glycan biomarker discovery have focused on glycan characterization by the global profiling of released glycans. Site-specific glycosylation analysis is less developed but may provide new types of biomarkers with higher sensitivity and specificity. Quantitation of peptide-conjugated glycans directly facilitates the differential analysis of distinct glycoforms associated with specific proteins at distinct sites. We have developed a method using MRM to monitor protein glycosylation normalized to absolute protein concentrations to examine quantitative changes in glycosylation at a site-specific level. This new approach provides information regarding both the absolute amount of protein and the site-specific glycosylation profile and will thus be useful to determine if altered glycosylation profiles in serum/plasma are due to a change in protein glycosylation or a change in protein concentration. The remarkable sensitivity and selectivity of MRM enable the detection of low abundance IgG glycopeptides, even when IgG was digested directly in serum with no cleanup prior to the liquid chromatography. Our results show a low limit of detection of 60 amol and a wide dynamic range of 3 orders magnitude for IgG protein quantitation. The results show that IgG glycopeptides can be analyzed directly from serum (without enrichment) and yield more accurate abundances when normalized to the protein content. This report represents the most comprehensive study so far of the use of multiple reaction monitoring for the quantitation of glycoproteins and their glycosylation patterns in biofluids.
旨在发现聚糖生物标志物的研究集中在通过释放聚糖的全局分析来对聚糖进行特征描述。位点特异性糖基化分析尚不成熟,但可能提供具有更高灵敏度和特异性的新型生物标志物。肽缀合聚糖的定量直接促进了与特定蛋白质在特定位置相关的不同糖型的差异分析。我们开发了一种使用 MRM 监测蛋白质糖基化相对于绝对蛋白质浓度的方法,以检查特定位置的糖基化的定量变化。这种新方法提供了关于蛋白质绝对数量和特定位置糖基化谱的信息,因此将有助于确定血清/血浆中改变的糖基化谱是由于蛋白质糖基化的改变还是蛋白质浓度的改变。MRM 的出色灵敏度和选择性能够检测低丰度 IgG 糖肽,即使在没有预先进行液体色谱净化的情况下,直接在血清中消化 IgG 也是如此。我们的结果显示 IgG 蛋白质定量的检测下限为 60 amol,动态范围为 3 个数量级。结果表明,IgG 糖肽可以直接从血清中进行分析(无需富集),并且当相对于蛋白质含量进行归一化时,可得到更准确的丰度。本报告代表迄今为止对使用多重反应监测进行生物体液中糖蛋白及其糖基化模式定量的最全面研究。