Recombinant MUC1 Probe Authentically Reflects Cell-specific O-glycosylation Profiles of Endogenous Breast Cancer Mucin. High Density and Prevalent Core 2-based Glycosylation
Overview
Authors
Affiliations
Knowledge about the O-linked glycan chains of tumor-associated MUC1 is primarily based on enzymatic and immunochemical evidence. To obtain structural information and to overcome limitations by the scarcity of endogenous mucin, we expressed a recombinant glycosylation probe corresponding to six MUC1 tandem repeats in four breast cancer cell lines. Comparative analyses of the O-glycan profiles were performed after hydrazinolysis and normal phase chromatography of 2-aminobenzamide-labeled glycans. Except for a general reduction in the O-glycan chain lengths and a high density glycosylation, no common structural pattern was revealed. T47D fusion protein exhibits an almost complete shift from core 2 to core 1 expression with a preponderance of sialylated glycans. By contrast, MCF-7, MDA-MB231, and ZR75-1 cells glycosylate the MUC1 repeat peptide preferentially with core 2-based glycans terminating mostly with alpha 3-linked sialic acid (MDA-MB231, ZR75-1) or alpha 2/3-linked fucose (MCF-7). Endogenous MUC1 from T47D and MCF-7 cell supernatants revealed almost identical O-glycosylation profiles compared with the respective recombinant probes, indicating that the fusion proteins reflected the authentic O-glycan profiles of the cells. The structural patterns in the majority of cells under study are in conflict with biosynthetic models of MUC1 O-glycosylation in breast cancer, which claim that the truncation of normal core 2-based polylactosamine structures to short sialylated core 1-based glycans is due to the reduced activity of core 2-forming beta 6-N-acetylglucosaminyltransferases and/or to overexpression of competitive alpha 3- sialyltransferase.
Glyco-nanotechnology: A biomedical perspective.
Kalita M, Payne M, Bossmann S Nanomedicine. 2022; 42:102542.
PMID: 35189393 PMC: 11164690. DOI: 10.1016/j.nano.2022.102542.
Suzuki Y Sensors (Basel). 2021; 21(16).
PMID: 34450954 PMC: 8400584. DOI: 10.3390/s21165512.
Al Jammaz I, Al-Otaibi B, Al-Malki Y, Abousekhrah A, Okarvi S EJNMMI Radiopharm Chem. 2021; 6(1):12.
PMID: 33738611 PMC: 7973340. DOI: 10.1186/s41181-021-00127-y.
Stewart T, Takahashi K, Xu N, Prakash A, Brown R, Raska M Glycobiology. 2020; 31(5):540-556.
PMID: 33295603 PMC: 8176776. DOI: 10.1093/glycob/cwaa111.
Ohyama Y, Nakajima K, Renfrow M, Novak J, Takahashi K Expert Rev Proteomics. 2020; 17(4):275-296.
PMID: 32406805 PMC: 7372739. DOI: 10.1080/14789450.2020.1769479.