Asker N, Axelsson M A, Olofsson S O, Hansson G C
Department of Medical Biochemistry, University of Göteborg, Medicinaregatan 9A, S-413 90 Gothenburg, Sweden.
J Biol Chem. 1998 Jul 24;273(30):18857-63. doi: 10.1074/jbc.273.30.18857.
Pulse-chase experiments in the colon cell line LS 174T combined with subcellular fractionation by sucrose density gradient centrifugation showed that the initial dimerization of the MUC2 apomucin started directly after translocation of the apomucin into the rough endoplasmic reticulum as detected by calnexin reactivity. As the mono- and dimers were chased, O-glycosylated MUC2 mono- and dimers were precipitated using an O-glycosylation-insensitive antiserum against the N-terminal domain of the MUC2 mucin. These O-glycosylated species were precipitated from the fractions that comigrated with the galactosyltransferase activity during the subcellular fractionation, indicating that not only MUC2 dimers but also a significant amount of monomers are transferred into the Golgi apparatus. Inhibition of N-glycosylation with tunicamycin treatment slowed down the rate of dimerization and introduced further oligomerization of the MUC2 apomucin in the endoplasmic reticulum. Results of two-dimensional gel electrophoresis demonstrated that these oligomers (putative tri- and tetramers) were stabilized by disulfide bonds. The non-N-glycosylated species of the MUC2 mucin were retained in the endoplasmic reticulum because no O-glycosylated species were precipitated after inhibition by tunicamycin. This suggests that N-glycans of MUC2 are necessary for the correct folding and dimerization of the MUC2 mucin.
在结肠细胞系LS 174T中进行的脉冲追踪实验,结合蔗糖密度梯度离心进行亚细胞分级分离,结果显示,如通过钙连蛋白反应性检测到的,MUC2脱辅基粘蛋白的初始二聚化在脱辅基粘蛋白转运至糙面内质网后立即开始。随着单体和二聚体的追踪,使用针对MUC2粘蛋白N端结构域的对O-糖基化不敏感的抗血清沉淀O-糖基化的MUC2单体和二聚体。这些O-糖基化产物从亚细胞分级分离过程中与半乳糖基转移酶活性共迁移的级分中沉淀出来,表明不仅MUC2二聚体,而且大量单体都被转运到高尔基体中。用衣霉素处理抑制N-糖基化减缓了二聚化速率,并在内质网中导致MUC2脱辅基粘蛋白进一步寡聚化。二维凝胶电泳结果表明,这些寡聚体(推测的三聚体和四聚体)通过二硫键稳定。MUC2粘蛋白的非N-糖基化产物保留在内质网中,因为衣霉素抑制后没有沉淀出O-糖基化产物。这表明MUC2的N-聚糖对于MUC2粘蛋白的正确折叠和二聚化是必需的。