Reid C J, Burdick M D, Hollingsworth M A, Harris A
Paediatric Molecular Genetics, Institute of Molecular Medicine, Oxford University, John Radcliffe Hospital, Oxford OX3 9DS, UK.
Glycobiology. 1999 Apr;9(4):389-98. doi: 10.1093/glycob/9.4.389.
The cause of the mucus clearance problems associated with cystic fibrosis remains poorly understood though it has been suggested that mucin hypersecretion, dehydration of mucins, and biochemical abnormalities in the glycosylation of mucins may be responsible. Since the biochemical and biophysical properties of a mucin are dependent on O-glycosylation, our aim was to evaluate the O-glycosylation of a single mucin gene product in matched pairs of cells that differed with respect to CFTR expression. An epitope-tagged MUC1 mucin cDNA (MUC1F) was used to detect variation in mucin glycosylation in stably transfected colon carcinoma cell lines HT29 and Caco2. The glycosylation of MUC1F mucin was evaluated in matched pairs of Caco2 cell lines that either express wild-type CFTR or have spontaneously lost CFTR expression. The general glycosylation pattern of MUC1F was evaluated by determining its reactivity with a series of monoclonal antibodies against known blood group and tumor-associated carbohydrate antigens. Metabolic labeling experiments were used to estimate the gross levels of glycosylation and sulfation of MUC1F mucin in these matched pairs of cell lines. Expression of CFTR in this experimental system did not affect the gross levels of glycosylation or sulfation of the MUC1F mucin nor the types of carbohydrates structures attached to the MUC1F protein.
尽管有人提出粘蛋白分泌过多、粘蛋白脱水以及粘蛋白糖基化的生化异常可能是导致与囊性纤维化相关的粘液清除问题的原因,但对此原因仍知之甚少。由于粘蛋白的生化和生物物理特性取决于O-糖基化,我们的目的是评估在CFTR表达不同的配对细胞中单个粘蛋白基因产物的O-糖基化。使用一个带有表位标签的MUC1粘蛋白cDNA(MUC1F)来检测稳定转染的结肠癌细胞系HT29和Caco2中粘蛋白糖基化的变化。在表达野生型CFTR或已自发丧失CFTR表达的配对Caco2细胞系中评估MUC1F粘蛋白的糖基化。通过测定MUC1F与一系列针对已知血型和肿瘤相关碳水化合物抗原的单克隆抗体的反应性,来评估MUC1F的一般糖基化模式。代谢标记实验用于估计这些配对细胞系中MUC1F粘蛋白的糖基化和硫酸化的总体水平。在该实验系统中CFTR的表达既不影响MUC1F粘蛋白的糖基化或硫酸化的总体水平,也不影响连接到MUC1F蛋白上的碳水化合物结构的类型。