Fucosyltransferase 8 (FUT8) and β-galactoside α-2,6-sialyltransferase 1 (ST6GAL1) are glycosyltransferases that catalyze α1,6-fucosylation and α2,6-sialylation, respectively, in the mammalian N-glycosylation pathway. They are aberrantly expressed in various human diseases. FUT8 is non-glycosylated but is responsible for the fucosylation of ST6GAL1. However, the mechanism for the interaction between these two enzymes is unknown. In this study, we show that serum levels of α2,6-sialylated N-glycans are increased in Fut8−/− mice, whereas the mRNA and protein levels of ST6GAL1 are unchanged in mouse live tissues. The level of α2,6-sialylation on IgG was also enhanced in Fut8−/− mice along with ST6GAL1 catalytic activity increase in both serum and liver. Moreover, it was observed that ST6GAL1 prefers non-fucosylated substrates. Interestingly, increased core fucosylation accompanied by a reduction in α2,6-sialylation, was detected in rheumatoid arthritis patient serum. These findings provide new insight into the interactions between FUT8 and ST6GAL1.
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March 2020
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Close ModalThe sensor protein H-NOX from Vibrio cholerae can be reversibly activated by oxidation of cysteine residues to a zinc binding site. Computational models along with EXAFS and mass spectrometry data reveal the details of this process. For further information, see the article by Mukhopadhyay and colleagues (pp. 1123–1136) in this issue. The image was provided by Erik Yukl.
Research Article|
March 27 2020
Loss of core fucosylation in both ST6GAL1 and its substrate enhances glycoprotein sialylation in mice
Guoling Huang;
Guoling Huang
*
1College of Basic Medical Sciences, Dalian Medical University, Dalian 116044, Liaoning, China
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Zhi Li;
Zhi Li
*
2Clinical Laboratory, Dalian Municipal Central Hospital, 826-Xinan Road, Shahekou District, Dalian, Liaoning 116033, China
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Yuqing Li;
Yuqing Li
*
1College of Basic Medical Sciences, Dalian Medical University, Dalian 116044, Liaoning, China
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Gang Liu;
Gang Liu
1College of Basic Medical Sciences, Dalian Medical University, Dalian 116044, Liaoning, China
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Shijie Sun;
Shijie Sun
1College of Basic Medical Sciences, Dalian Medical University, Dalian 116044, Liaoning, China
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Jianguo Gu;
Jianguo Gu
3Division of Regulatory Glycobiology, Institute of Molecular Biomembrane and Glycobiology, Tohoku Medical and Pharmaceutical University, Miyagi, Japan
4Department of Pharmacology, Pharmacy College, Nantong University, Nantong, Jiangsu, China
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Akihiko Kameyama;
Akihiko Kameyama
5Biotechnology Research Institute for Drug Discovery, National Institute of Advanced Industrial Science and Technology (AIST), Open Space Laboratory C-2, 1-1-1 Umezono, Tsukuba, Ibaraki 305-8568, Japan
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Wenzhe Li;
1College of Basic Medical Sciences, Dalian Medical University, Dalian 116044, Liaoning, China
Correspondence: Weijie Dong (wjdong@dmu.edu.cn) or Wenzhe Li (liwenzhe@dmu.edu.cn)
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Weijie Dong
1College of Basic Medical Sciences, Dalian Medical University, Dalian 116044, Liaoning, China
Correspondence: Weijie Dong (wjdong@dmu.edu.cn) or Wenzhe Li (liwenzhe@dmu.edu.cn)
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Biochem J (2020) 477 (6): 1179–1201.
Article history
Received:
October 29 2019
Revision Received:
February 26 2020
Accepted:
March 06 2020
Accepted Manuscript online:
March 06 2020
Citation
Guoling Huang, Zhi Li, Yuqing Li, Gang Liu, Shijie Sun, Jianguo Gu, Akihiko Kameyama, Wenzhe Li, Weijie Dong; Loss of core fucosylation in both ST6GAL1 and its substrate enhances glycoprotein sialylation in mice. Biochem J 27 March 2020; 477 (6): 1179–1201. doi: https://doi.org/10.1042/BCJ20190789
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