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小鼠免疫球蛋白G(IgG)可结晶片段的糖基化在IgG亚类和品系之间存在差异。

The Glycosylation of Mouse Immunoglobulin G (IgG)-Fragment Crystallizable Differs Between IgG Subclasses and Strains.

作者信息

de Haan Noortje, Reiding Karli R, Krištić Jasminka, Hipgrave Ederveen Agnes L, Lauc Gordan, Wuhrer Manfred

机构信息

Center for Proteomics and Metabolomics, Leiden University Medical Center, Leiden, Netherlands.

Glycoscience Research Laboratory, Genos, Zagreb, Croatia.

出版信息

Front Immunol. 2017 May 31;8:608. doi: 10.3389/fimmu.2017.00608. eCollection 2017.

Abstract

-linked glycosylation of the fragment crystallizable (Fc)-region of immunoglobulin G (IgG) is known to have a large influence on the activity of the antibody, an effect reported to be IgG subclass specific. This situation applies both to humans and mice. The mouse is often used as experimental animal model to study the effects of Fc-glycosylation on IgG effector functions, and results are not uncommonly translated back to the human situation. However, while human IgG Fc-glycosylation has been extensively characterized in both health and disease, this is not the case for mice. To characterize the glycosylation profile of murine IgG-Fc and in addition evaluate the systematic glycosylation differences between mouse strains, sexes, and IgG subclasses, we used nanoliquid chromatography mass spectrometry (nanoLC-MS(/MS)) to look at the subclass-specific IgG Fc-glycopeptides of male and female mice from the strains BALB/c, C57BL/6, CD-1, and Swiss Webster. The structural analysis revealed the presence of predominantly fucosylated, diantennary glycans, with varying amounts of galactosylation and α2,6-sialylation. In addition, we report glycosylation features not previously reported in an Fc-specific way on murine IgG, including monoantennary, hybrid, and high mannose structures, as well as diantennary structures without a core fucose, with a bisecting acetylglucosamine, or with α1,3-galactosylation. Pronounced differences were detected between strains and the IgG subclasses within each strain. Especially the large spread in galactosylation and sialylation levels found between both strains and subclasses may vastly influence IgG effector functions. Mouse strain-based and subclass-specific glycosylation differences should be taken into account when designing and interpreting immunological and glycobiological mouse studies involving IgG effector functions.

摘要

已知免疫球蛋白G(IgG)的可结晶片段(Fc)区域的N-连接糖基化对抗体活性有很大影响,据报道这种效应具有IgG亚类特异性。这种情况在人类和小鼠中都存在。小鼠常被用作实验动物模型来研究Fc糖基化对IgG效应功能的影响,并且研究结果常常被类推到人类情况。然而,虽然人类IgG Fc糖基化在健康和疾病状态下都已得到广泛表征,但小鼠的情况并非如此。为了表征小鼠IgG-Fc的糖基化谱,并评估小鼠品系、性别和IgG亚类之间的系统性糖基化差异,我们使用了纳升液相色谱质谱联用仪(nanoLC-MS(/MS))来分析来自BALB/c、C57BL/6、CD-1和瑞士韦伯斯特品系的雄性和雌性小鼠的亚类特异性IgG Fc糖肽。结构分析表明,主要存在岩藻糖基化的双天线聚糖,其半乳糖基化和α2,6-唾液酸化程度各不相同。此外,我们报告了以前未以Fc特异性方式报道的小鼠IgG糖基化特征,包括单天线、杂合和高甘露糖结构,以及没有核心岩藻糖、带有平分N-乙酰葡糖胺或带有α1,3-半乳糖基化的双天线结构。在品系之间以及每个品系内的IgG亚类之间检测到明显差异。特别是在品系和亚类之间发现的半乳糖基化和唾液酸化水平的巨大差异可能会极大地影响IgG效应功能。在设计和解释涉及IgG效应功能的免疫学和糖生物学小鼠研究时,应考虑基于小鼠品系和亚类特异性的糖基化差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c817/5449507/cc81bf4c9dd9/fimmu-08-00608-g001.jpg

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