Exploring Regulation of Protein O-Glycosylation in Isogenic Human HEK293 Cells by Differential O-Glycoproteomics

糖蛋白组学 HEK 293细胞 糖基化 化学 N-连接糖基化 细胞生物学 计算生物学 生物 聚糖 生物化学 糖蛋白 基因
作者
Yoshiki Narimatsu,Hiren J. Joshi,Katrine T. Schjoldager,John Hintze,Adnan Halim,Catharina Steentoft,Rebecca Nason,Ulla Mandel,Eric Bennett,Henrik Clausen,Sergey Y. Vakhrushev
出处
期刊:Molecular & Cellular Proteomics [Elsevier BV]
卷期号:18 (7): 1396-1409 被引量:60
标识
DOI:10.1074/mcp.ra118.001121
摘要

Most proteins trafficking the secretory pathway of metazoan cells will acquire GalNAc-type O-glycosylation. GalNAc-type O-glycosylation is differentially regulated in cells by the expression of a repertoire of up to twenty genes encoding polypeptide GalNAc-transferase isoforms (GalNAc-Ts) that initiate O-glycosylation. These GalNAc-Ts orchestrate the positions and patterns of O-glycans on proteins in coordinated, but poorly understood ways - guided partly by the kinetic properties and substrate specificities of their catalytic domains, as well as by modulatory effects of their unique GalNAc-binding lectin domains. Here, we provide the hereto most comprehensive characterization of nonredundant contributions of individual GalNAc-T isoforms to the O-glycoproteome of the human HEK293 cell using quantitative differential O-glycoproteomics on a panel of isogenic HEK293 cells with knockout of GalNAc-T genes (GALNT1, T2, T3, T7, T10, or T11). We confirm that a major part of the O-glycoproteome is covered by redundancy, whereas distinct O-glycosite subsets are covered by nonredundant GalNAc-T isoform-specific functions. We demonstrate that the GalNAc-T7 and T10 isoforms function in follow-up of high-density O-glycosylated regions, and that GalNAc-T11 has highly restricted functions and essentially only serves the low-density lipoprotein-related receptors in linker regions (C6XXXTC1) between the ligand-binding repeats.

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