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结肠癌细胞中MUC2上皮黏蛋白生物合成的早期步骤。

Early steps in the biosynthesis of MUC2 epithelial mucin in colon cancer cells.

作者信息

McGuckin M A, Devine P L, Ward B G

机构信息

Department of Obstetrics and Gynaecology, University of Queensland, Royal Brisbane Hospital, Herston, Australia.

出版信息

Biochem Cell Biol. 1996;74(1):87-93. doi: 10.1139/o96-009.

Abstract

Expression of the MUC2 mucin has been demonstrated in normal gastrointestinal and respiratory epithelium and in carcinomas of the gastrointestinal and respiratory tracts, breast, ovary, and bladder using RNA probes and (or) monoclonal antibodies reactive with peptide epitopes on the 23 amino acid tandem repeat. Mouse monoclonal antibodies 4F1 and 3A2 were previously obtained by immunization with mucin derived from the LS174T colon cancer cell line and a KLH conjugate of a synthetic MUC2 VNTR peptide. These antibodies react with distinct epitopes on synthetic VNTR peptides and with normal and malignant epithelial tissues. In the present study, we examined the biosynthesis of MUC2 in LS174T colon cancer cells, using these antibodies to immunoprecipitate labelled mucin. A very high molecular mass protein was immunoprecipitated following 1 min pulse labelling with [3H]threonine and [3H]proline. A slight increase in molecular mass was observed over the next 16 min; however, unlike the MUC1 mucin, there was no large difference in apparent molecular mass between the MUC2 protein precursor and fully processed mucin using separation by SDS-PAGE. O-Glycosylation began within 1 h of synthesis of the protein core. Mucin secretion into the culture medium was detected in the 2nd hour following synthesis and was largely completed within 4 h of synthesis. Secreted mucin was far less reactive with these monoclonal antibodies than the precursor protein.

摘要

利用RNA探针和(或)与23个氨基酸串联重复序列上的肽表位发生反应的单克隆抗体,已证实在正常胃肠道和呼吸道上皮以及胃肠道、呼吸道、乳腺、卵巢和膀胱的癌组织中存在MUC2黏蛋白的表达。小鼠单克隆抗体4F1和3A2先前是通过用源自LS174T结肠癌细胞系的黏蛋白以及合成MUC2 VNTR肽的KLH缀合物进行免疫而获得的。这些抗体与合成VNTR肽上不同的表位以及正常和恶性上皮组织发生反应。在本研究中,我们利用这些抗体免疫沉淀标记的黏蛋白,研究了LS174T结肠癌细胞中MUC2的生物合成。在用[3H]苏氨酸和[3H]脯氨酸进行1分钟脉冲标记后,一种非常高分子量的蛋白质被免疫沉淀。在接下来的16分钟内观察到分子量略有增加;然而,与MUC1黏蛋白不同,使用SDS-PAGE分离时,MUC2蛋白前体和完全加工的黏蛋白在表观分子量上没有很大差异。O-糖基化在蛋白质核心合成后1小时内开始。在合成后第2小时检测到黏蛋白分泌到培养基中,并且在合成后4小时内基本完成。分泌的黏蛋白与这些单克隆抗体的反应性远低于前体蛋白。

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