Center of Proteomics and Metabolomics, Leiden University Medical Center, P.O. Box 9600, Postzone, P1-Q, Leiden 2300 RC, The Netherlands.
J Proteome Res. 2020 Oct 2;19(10):4158-4162. doi: 10.1021/acs.jproteome.0c00656. Epub 2020 Sep 18.
Immunoglobulin G (IgG) glycosylation is a key post-translational modification in regulating IgG function. It is therefore a prominent target for biomarker discovery and a critical quality attribute of antibody-based biopharmaceuticals. A common approach for IgG glycosylation analysis is the measurement of tryptic glycopeptides. Glycosylation stability during sample processing is a key prerequisite for an accurate and robust analysis yet has hitherto hardly been studied. Especially, acid hydrolysis of sialic acids may be a source for instability. Therefore, we investigated acid denaturation, centrifugal vacuum concentration, and glycopeptide storage regarding changes in the IgG glycosylation profile. Intravenous IgG was analyzed employing imaginable deviations from a reference method and stress conditions. All glycosylation features -sialylation, galactosylation, bisection, and fucosylation-remained unchanged for most conditions. Only with prolonged exposure to acidic conditions at 37 °C, sialylation decreased significantly and subtle changes occurred for galactosylation. Consequently, provided that long or intense heating in acidic solutions is avoided, sample preparation for bottom-up glycoproteomics does not introduce conceivable biases.
免疫球蛋白 G(IgG)糖基化是调节 IgG 功能的关键翻译后修饰。因此,它是生物标志物发现的一个重要目标,也是抗体类生物制药的关键质量属性。IgG 糖基化分析的常用方法是测量胰蛋白酶糖肽。在样品处理过程中保持糖基化稳定性是准确和稳健分析的关键前提,但迄今几乎没有研究过。特别是,唾液酸的酸水解可能是不稳定的来源。因此,我们研究了酸变性、离心真空浓缩和糖肽储存对 IgG 糖基化谱变化的影响。采用参考方法和应激条件对静脉注射 IgG 进行分析。在大多数情况下,所有糖基化特征(唾液酸化、半乳糖基化、双分叉和岩藻糖化)都保持不变。只有在 37°C 下长时间暴露于酸性条件下,唾液酸化才会显著降低,半乳糖基化也会发生细微变化。因此,只要避免在酸性溶液中长时间或剧烈加热,用于自上而下糖蛋白质组学的样品制备就不会引入可想象的偏差。