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Glycobiology and Extracellular Matrices
2 Results
- Glycobiology and Extracellular MatricesOpen Access
Defective mucin-type glycosylation on α-dystroglycan in COG-deficient cells increases its susceptibility to bacterial proteases
Journal of Biological ChemistryVol. 293Issue 37p14534–14544Published online: July 26, 2018- Seok-Ho Yu
- Peng Zhao
- Pradeep K. Prabhakar
- Tiantian Sun
- Aaron Beedle
- Geert-Jan Boons
- and others
Cited in Scopus: 3Deficiency in subunits of the conserved oligomeric Golgi (COG) complex results in pleiotropic defects in glycosylation and causes congenital disorders in humans. Insight regarding the functional consequences of this defective glycosylation and the identity of specific glycoproteins affected is lacking. A chemical glycobiology strategy was adopted to identify the surface glycoproteins most sensitive to altered glycosylation in COG-deficient Chinese hamster ovary (CHO) cells. Following metabolic labeling, an unexpected increase in GalNAz incorporation into several glycoproteins, including α-dystroglycan (α-DG), was noted in cog1-deficient ldlB cells. - Glycobiology and Extracellular MatricesOpen Access
Selective Exo-Enzymatic Labeling Detects Increased Cell Surface Sialoglycoprotein Expression upon Megakaryocytic Differentiation
Journal of Biological ChemistryVol. 291Issue 8p3982–3989Published online: January 5, 2016- Seok-Ho Yu
- Peng Zhao
- Tiantian Sun
- Zhongwei Gao
- Kelley W. Moremen
- Geert-Jan Boons
- and others
Cited in Scopus: 36Selective exo-enzymatic labeling (or SEEL) uses recombinant glycosyltransferases and nucleotide-sugar analogues to allow efficient labeling of cell surface glycans. SEEL can circumvent many of the possible issues associated with metabolic labeling, including low incorporation of sugar precursors, and allows for sugars to be added selectively to different types of glycans by virtue of the inherent specificity of the glycosyltransferases. Here we compare the labeling of sialoglycoproteins in undifferentiated and differentiated human erythroleukemia cells (HEL) using SEEL using the sialyltransferases ST6Gal1 and ST3Gal1, which label N- and O-glycans, respectively.