Salt-Adaptation of Tobacco BY2 Cells Induces Change in Glycoform of N-Glycans: Enhancement of Exo- and Endo-Glycosidase Activities by Salt-Adaptation
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概要
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In this report, we describe that a salt adaptation of plant cells induces glycoform changes in N-glycoproteins. Intracellular and cell-wall glycopeptides were prepared from glycoproteins expressed in wild-type BY2 cells and salt-adapted cells. N-Glycans were liberated from those glycopeptides by hydrazinolysis, and the released oligosaccharides were N-acetylated and pyridylaminated. The structures of pyridylaminated (PA-) N-glycans were analyzed by a combination of two-dimensional sugar-chain mapping, MS analysis, and exoglycosidase digestion. In both wild-type cells and salt-adapted cells, the plant complex type structure was predominant among N-glycans expressed on glycoproteins, but we found that the Man2Xyl1Fuc1GlcNAc2 structure was significantly expressed on intracellular and cell-wall glycoproteins of the salt-adapted cells. Furthermore, enhancement of the specific activities of α-mannosidase and β-N-acetylglucosaminidase was observed in the salt-adapted BY2 cells, suggesting that the glycoform changes are due to changes in glycosidase activities.
- 社団法人 日本農芸化学会の論文
著者
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Fujiyama Kazuhito
International Center for Biotechnology, Osaka University
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WATANABE Takao
Department of Environmental Health, Miyagi University of Education
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KIMURA Yoshinobu
Department of Bioresources Chemistry, Faculty of Agriculture, Okayama University
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木村 吉伸
Dep. Of Biofunctional Chemistry Graduate School Of Natural Sci. And Technol. Okayama Univ.
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MAEDA Megumi
Department of Hygiene, Kawasaki Medical School
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Kimura Mariko
Faculty of Food Culture, Department of Nutrition, Kurashiki Sakuyo University
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Kimura M
Laboratory Of Biochemistry Faculty Of Agriculture Graduate School Kyushu University
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MURATA Yoshiyuki
Department of Biological Resources Chemistry, Okayama University
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