糖基化
化学
糖肽
抗体
碎片结晶区
液相色谱-质谱法
糖基化
质谱法
糖蛋白
受体
免疫球蛋白G
补语(音乐)
补体成分5
选择性反应监测
分子生物学
免疫球蛋白Fc片段
生物化学
低聚糖
定量分析(化学)
计算生物学
补体系统
Fc受体
生物
N-连接糖基化
色谱法
免疫球蛋白结构域
配体结合分析
发病机制
串联质谱法
单克隆抗体
作者
Yue Ma,Yang Song,Ji Luo,Jingxia Wang,Yi‐Wei Tang,Dapeng Zhou
标识
DOI:10.1021/acs.jproteome.5c00560
摘要
The N-glycoforms of Fc domain critically regulate binding affinity of IgG1 to Fcγ receptor IIIA (FcγRIIIa), Fcγ receptor IIb (FcγRIIb), and complement components. Quantifying antigen-specific IgG1 glycopeptides may provide precise insights into the pathogenesis of severe viral infections and autoantibody-mediated diseases. Here, we developed a liquid chromatography (LC) coupled with mass spectrometry (MS) by the multiple reaction monitoring (MRM) method to analyze IgG1 glycosylation profiles. Calibration curves were generated for six glycopeptides with integrated isotope-labeled internal standards, yielding lower limits of quantification (LLOQ) of G2 (200 pg/mL, 70.92 pM), G0F (500 pg/mL, 189.39 pM), G0NF (40 pg/mL, 14.05 pM), G2S (2.5 ng/mL, 802.87 pM), G1 (500 pg/mL, 187.98 pM), and G1N (100 pg/mL, 34.93 pM). For absolute IgG1 quantification, the LLOQ was determined as 1.26 μg/mL (8.43 nM). Application of calibration curve-based assays to influenza and COVID-19 infected individuals (within 3 months after infection) revealed distinct glycosylation profiles: influenza infected individuals exhibited significantly reduced core-fucosylation (28%), while both disease groups showed elevated galactosylation levels. This methodology provides a platform for laboratory-developed tests to track glycosylation alterations using widely accessible liquid chromatography-mass spectrometry (LC-MS) equipment.
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