Simultaneous and sialic acid linkage-specific N- and O-linked glycan analysis by ester-to-amide derivatization

被引:0
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作者
Hisatoshi Hanamatsu
Yoshiaki Miura
Takashi Nishikaze
Ikuko Yokota
Kentaro Homan
Tomohiro Onodera
Yoshihiro Hayakawa
Norimasa Iwasaki
Jun-ichi Furukawa
机构
[1] Hokkaido University,Department of Orthopaedic Surgery, Faculty of Medicine and Graduate School of Medicine
[2] Hokkaido University,Department of Gastroenterology and Hepatology, Graduate School of Medicine
[3] Sumitomo Bakelite Co.,Solutions COE, Analytical & Measuring Instruments Division
[4] Ltd.,Institute for Glyco
[5] Shimadzu Corporation,core Research (iGCORE)
[6] Nagoya University,undefined
来源
Glycoconjugate Journal | 2023年 / 40卷
关键词
-glycan; Non-reductive β-elimination; Sialic acid; Linkage-specific derivatization; Mass;
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学科分类号
摘要
Characterization of O-glycans linked to serine or threonine residues in glycoproteins has mostly been achieved using chemical reaction approaches because there are no known O-glycan-specific endoglycosidases. Most O-glycans are modified with sialic acid residues at the non-reducing termini through various linkages. In this study, we developed a novel approach for sialic acid linkage-specific O-linked glycan analysis through lactone-driven ester-to-amide derivatization combined with non-reductive β-elimination in the presence of hydroxylamine. O-glycans released by non-reductive β-elimination were efficiently purified using glycoblotting via chemoselective ligation between carbohydrates and a hydrazide-functionalized polymer, followed by modification of methyl or ethyl ester groups of sialic acid residues on solid-phase. In-solution lactone-driven ester-to-amide derivatization of ethyl-esterified O-glycans was performed, and the resulting sialylated glycan isomers were discriminated by mass spectrometry. In combination with PNGase F digestion, we carried out simultaneous, quantitative, and sialic acid linkage-specific N- and O-linked glycan analyses of a model glycoprotein and human cartilage tissue. This novel glycomic approach will facilitate detailed characterization of biologically relevant sialylated N- and O-glycans on glycoproteins.
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页码:259 / 267
页数:8
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