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Versatile characterization of glycosylation modification in CTLA4-Ig fusion proteins by liquid chromatography-mass spectrometry
Authors:Lei Zhu  Qingcheng Guo  Huaizu Guo  Tao Liu  Yingxin Zheng  Peiming Gu  Xi Chen  Hao Wang  Sheng Hou  Yajun Guo
Institution:1.International Joint Cancer Institute; Second Military Medical University; Shanghai, China;2.State Key Laboratory of Antibody Medicine and Targeted Therapy; Shanghai Key Laboratory of Cell Engineering; Shanghai, China;3.PLA General Hospital Cancer Center; PLA Postgraduate School of Medicine; Beijing, China;4.Thermo Fisher; Shanghai, China;5.Waters Corporation; Shanghai, China
Abstract:CTLA4-Ig is a highly glycosylated therapeutic fusion protein that contains multiple N- and O-glycosylation sites. Glycosylation plays a vital role in protein solubility, stability, serum half-life, activity, and immunogenicity. For a CTLA4-Ig biosimilar development program, comparative analytical data, especially the glycosylation data, can influence decisions about the type and amount of animal and clinical data needed to establish biosimilarity. Because of the limited clinical experience with biosimilars before approval, a comprehensive level of knowledge about the biosimilar candidates is needed to achieve subsequent development. Liquid chromatography-mass spectrometry (LC–MS) is a versatile technique for characterizing N- and O-glycosylation modification of recombinant therapeutic proteins, including 3 levels: intact protein analysis, peptide mapping analysis, and released glycans analysis. In this report, an in-depth characterization of glycosylation of a candidate biosimilar was carried out using a systematic approach: N- and O-linked glycans were identified and electron-transfer dissociation was then used to pinpoint the 4 occupied O-glycosylation sites for the first time. As the results show, the approach provides a set of routine tools that combine accurate intact mass measurement, peptide mapping, and released glycan profiling. This approach can be used to comprehensively research a candidate biosimilar Fc-fusion protein and provides a basis for future studies addressing the similarity of CTLA4-Ig biosimilars.
Keywords:characterization  CTLA4-Ig fusion protein  glycan  glycosylation modification  intact protein  mass spectrometry  peptide mapping  similarity
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