Institutes for Systems Genetics, West China Hospital, Sichuan University, Chengdu, China.
Institute of Thoracic Oncology, West China Hospital, Sichuan University, Chengdu, China.
Front Immunol. 2022 Sep 15;13:1013990. doi: 10.3389/fimmu.2022.1013990. eCollection 2022.
Monoclonal immunoglobulin produced by clonal plasma cells is the main cause in multiple myeloma and monoclonal gammopathy of renal significance. Because of the complicated purification method and the low stoichiometry of purified protein and glycans, site-specific N-glycosylation characterization for monoclonal immunoglobulin is still challenging. To profile the site-specific N-glycosylation of monoclonal immunoglobulins is of great interest. Therefore, in this study, we presented an integrated workflow for micro monoclonal IgA and IgG purification from patients with multiple myeloma in the HYDRASYS system, in-agarose-gel digestion, LC-MS/MS analysis without intact N-glycopeptide enrichment, and compared the identification performance of different mass spectrometry dissociation methods (EThcD-sceHCD, sceHCD, EThcD and sceHCD-pd-ETD). The results showed that EThcD-sceHCD was a better choice for site-specific N-glycosylation characterization of micro in-agarose-gel immunoglobulins (~2 μg) because it can cover more unique intact N-glycopeptides (37 and 50 intact N-glycopeptides from IgA1 and IgG2, respectively) and provide more high-quality spectra than sceHCD, EThcD and sceHCD-pd-ETD. We demonstrated the benefits of the alternative strategy in site-specific N-glycosylation characterizing micro monoclonal immunoglobulins obtained from bands separated by electrophoresis. This work could promote the development of clinical N-glycoproteomics and related immunology.
单克隆免疫球蛋白由克隆浆细胞产生,是多发性骨髓瘤和具有肾意义的单克隆丙种球蛋白病的主要病因。由于纯化方法复杂,以及纯化蛋白和聚糖的化学计量比低,单克隆免疫球蛋白的位点特异性 N-糖基化特征仍然具有挑战性。对单克隆免疫球蛋白的位点特异性 N-糖基化进行分析具有重要意义。因此,在这项研究中,我们提出了一种从 HYDRASYS 系统中多发性骨髓瘤患者中微单克隆 IgA 和 IgG 进行集成纯化的工作流程,即在琼脂糖凝胶中进行酶解,在不进行完整 N-糖肽富集的情况下进行 LC-MS/MS 分析,并比较了不同质谱裂解方法(EThcD-sceHCD、sceHCD、EThcD 和 sceHCD-pd-ETD)的鉴定性能。结果表明,EThcD-sceHCD 是微琼脂糖凝胶免疫球蛋白(约 2μg)位点特异性 N-糖基化特征分析的更好选择,因为它可以覆盖更多独特的完整 N-糖肽(分别来自 IgA1 和 IgG2 的 37 个和 50 个完整 N-糖肽),并提供比 sceHCD、EThcD 和 sceHCD-pd-ETD 更多高质量的谱图。我们证明了这种替代策略在通过电泳分离的条带中获得的微单克隆免疫球蛋白的位点特异性 N-糖基化特征分析中的益处。这项工作可以促进临床 N-糖蛋白质组学和相关免疫学的发展。