Department of Biosciences, Bioanalytical Research Labs, University of Salzburg, Hellbrunner Straße 34, 5020 Salzburg, Austria.
Christian Doppler Laboratory for Innovative Tools for Biosimilar Characterization, University of Salzburg, Hellbrunner Straße 34, 5020 Salzburg, Austria.
Anal Chem. 2021 Aug 3;93(30):10424-10434. doi: 10.1021/acs.analchem.1c02199. Epub 2021 Jul 21.
Modern analytical approaches employing high-resolution mass spectrometry (MS) facilitate the generation of a vast amount of structural data of highly complex glycoproteins. Nevertheless, systematic interpretation of this data at different structural levels remains an analytical challenge. The glycoprotein utilized as a model system in this study, human chorionic gonadotropin (hCG), exists as a heterodimer composed of two heavily glycosylated subunits. In order to unravel the multitude of glycoforms of recombinant hCG (drug product Ovitrelle), we combine established techniques, such as released glycan and glycopeptide analysis, with novel approaches employing high-performance liquid chromatography-mass spectrometry (HPLC-MS) to characterize protein subunits and native MS to analyze the noncovalent hCG complex. Starting from the deconvoluted mass spectrum of dimeric hCG comprising about 50 signals, it was possible to explore the chemical space of hCG glycoforms and elucidate the complexity that hides behind just 50 signals. Systematic, stepwise integration of data obtained at the levels of released glycans, glycopeptides, and subunits using a computational annotation tool allowed us to reveal 1031 underlying glycoforms. Additionally, critical quality attributes such as sialylation and core fucosylation were compared for two batches of Ovitrelle to assess the potential product variability.
现代分析方法采用高分辨率质谱(MS),有助于生成大量高度复杂糖蛋白的结构数据。然而,在不同结构层次上对这些数据进行系统解释仍然是一个分析挑战。本研究中用作模型系统的糖蛋白是人绒毛膜促性腺激素(hCG),它以由两个高度糖基化亚基组成的异二聚体形式存在。为了揭示重组 hCG(药物 Ovitrelle)的多种糖型,我们结合了已建立的技术,如释放聚糖和糖肽分析,以及采用高效液相色谱-质谱(HPLC-MS)的新方法来表征蛋白质亚基,并采用非共价 hCG 复合物的原始 MS 进行分析。从包含约 50 个信号的二聚体 hCG 的去卷积质谱开始,就有可能探索 hCG 糖型的化学空间,并阐明仅 50 个信号背后隐藏的复杂性。使用计算注释工具逐步系统地整合在释放聚糖、糖肽和亚基水平上获得的数据,使我们能够揭示 1031 个潜在的糖型。此外,还比较了两个批次 Ovitrelle 的唾液酸化和核心岩藻糖基化等关键质量属性,以评估潜在的产品变异性。