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MUC5AC粘蛋白组装途径中分子中间体的鉴定。

Identification of molecular intermediates in the assembly pathway of the MUC5AC mucin.

作者信息

Sheehan John K, Kirkham Sara, Howard Marj, Woodman Philip, Kutay Saduman, Brazeau Caroline, Buckley Jeanette, Thornton David J

机构信息

School of Biological Sciences, University of Manchester, Michael Smith Building, Manchester M13 9PT, United Kingdom.

出版信息

J Biol Chem. 2004 Apr 9;279(15):15698-705. doi: 10.1074/jbc.M313241200. Epub 2004 Jan 28.

Abstract

MUC5AC mucins secreted by HT-29 cells in culture are oligomeric glycoproteins with characteristics similar to the MUC5AC mucins isolated from human airway sputum (Sheehan, J. K., Brazeau, C., Kutay, S., Pigeon, H., Kirkham, S., Howard, M., and Thornton, D. J. (2000) Biochem. J. 347, 37-44). Therefore we have used this cell line as a model system to investigate the biosynthesis of this major airway mucin. Initial experiments showed that the MUC5AC mucins isolated from the cells were liable to depolymerization depending on the conditions used for their solubilization. Prevention against reduction resulted in large oligomers associated with the cells, similar to those secreted into the medium. Using a combination of density gradient centrifugation and agarose gel electrophoresis coupled with probes specific for different forms of the mucin we identified five major intracellular populations of the MUC5AC polypeptide (unglycosylated monomer and dimer, GalNAc-substituted dimer, fully glycosylated dimer, and higher order oligomers). Pulse-chase studies were performed to follow the flow of radioactivity through these various intracellular forms into the mature oligomeric mucin secreted into the medium (a process taking approximately 2-4 h). The results show that the mucin polypeptide undergoes dimerization and then becomes substituted with GalNAc residues prior to glycan elaboration to produce a mature mucin dimer, which then undergoes multimerization. These data indicate that this oligomeric mucin follows a similar assembly to the von Willebrand factor glycoprotein to yield long linear disulfide-linked chains.

摘要

培养的HT - 29细胞分泌的MUC5AC粘蛋白是寡聚糖蛋白,其特性与人气道痰液中分离出的MUC5AC粘蛋白相似(希恩,J.K.,布拉佐,C.,库泰,S.,皮金,H.,柯克姆,S.,霍华德,M.,以及桑顿,D.J.(2000年)《生物化学杂志》347卷,37 - 44页)。因此,我们使用该细胞系作为模型系统来研究这种主要气道粘蛋白的生物合成。初步实验表明,从细胞中分离出的MUC5AC粘蛋白根据其溶解条件易于解聚。防止还原会导致与细胞相关的大寡聚体,类似于分泌到培养基中的那些。通过结合密度梯度离心和琼脂糖凝胶电泳以及针对不同形式粘蛋白的特异性探针,我们鉴定出了MUC5AC多肽的五个主要细胞内群体(未糖基化的单体和二聚体、GalNAc取代的二聚体、完全糖基化的二聚体以及更高阶的寡聚体)。进行脉冲追踪研究以追踪放射性通过这些各种细胞内形式进入分泌到培养基中的成熟寡聚粘蛋白的流动情况(这个过程大约需要2 - 4小时)。结果表明,粘蛋白多肽先进行二聚化,然后在聚糖修饰之前被GalNAc残基取代,以产生成熟的粘蛋白二聚体,然后再进行多聚化。这些数据表明,这种寡聚粘蛋白遵循与血管性血友病因子糖蛋白相似的组装方式,以产生长的线性二硫键连接链。

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