糖基化
聚糖
糖蛋白
化学
N-连接糖基化
重组DNA
生物化学
基因
作者
Kathrin Stavenhagen,Rabah Gahoual,Elena Domínguez‐Vega,Angelo Palmese,Agnes L. Hipgrave Ederveen,Francesca Cutillo,Wolf Palinsky,Horst Bierau,Manfred Wuhrer
出处
期刊:mAbs
[Landes Bioscience]
日期:2019-07-26
卷期号:11 (6): 1053-1063
被引量:28
标识
DOI:10.1080/19420862.2019.1630218
摘要
The Fc-fusion protein atacicept is currently under clinical investigation for its biotherapeutic application in autoimmune diseases owing to its ability to bind the two cytokines B-Lymphocyte Stimulator (BLyS) and A PRoliferation-Inducing Ligand (APRIL). Like typical recombinant IgG-based therapeutics, atacicept is a glycoprotein whose glycosylation-related heterogeneity arises from the glycosylation-site localization, site-specific occupation and structural diversity of the attached glycans. Here, we present a first comprehensive site-specific N- and O-glycosylation characterization of atacicept using mass spectrometry-based workflows. First, N- and O-glycosylation sites and their corresponding glycoforms were identified. Second, a relative quantitation of the N-glycosylation site microheterogeneity was achieved by glycopeptide analysis, which was further supported by analysis of the released N-glycans. We confirmed the presence of one N-glycosylation site, carrying 47 glycoforms covering 34 different compositions, next to two hinge region O-glycosylation sites with core 1-type glycans. The relative O-glycan distribution was analyzed based on the de-N-glycosylated intact protein species. Overall, N- and O-glycosylation were consistent between two individual production batches.
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