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Role of carbohydrate in biological function of the adhesive glycoprotein fibronectin.

机译:碳水化合物在粘附性糖蛋白纤连蛋白生物学功能中的作用。

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摘要

We have investigated the role of the carbohydrate moiety in the biological activity of fibronectin in vitro by using tunicamycin to inhibit the glycosylation of this glycoprotein. Tunicamycin is a glucosamine-containing antibiotic that specifically inhibits glycosylation of protein asparaginyl residues mediated by dolichol pyrophosphate. Fibronectin synthesized in the presence of 0.5 microgram of tunicamycin per ml was not glycosylated, as determined by amino sugar analysis, lack of incorporation of [14C]glucosamine and [3H]mannose, and concanavalin A binding studies. Nonglycosylated fibronectin that was isolated from chicken embryo fibroblasts and added to transformed cells in vitro was as effective as the glycosylated protein in promoting a more normal fibroblastic phenotype, including cell flattening, elongation of cell processes, and parallel alignment of cells. The nonglycosylated protein was also as effective as the glycosylated species in mediating cell attachment to collagen and spreading on plastic, as well as in agglutination of formalin-fixed sheep erythrocytes. The nonglycosylated protein was twice as sensitive as the glycosylated protein to proteolytic hydrolysis in vitro as had been suggested by previous studies with intact cells [Olden, K., Pratt, R.M. & Yamada, K.M. (1978) Cell 13, 461-473]. We conclude that the carbohydrate moiety of fibronectin is not required for the mediation of a number of biological activities characteristic of this glycoprotein.
机译:我们已经通过使用衣霉素抑制该糖蛋白的糖基化研究了碳水化合物部分在纤连蛋白体外生物活性中的作用。衣霉素是一种含氨基葡萄糖的抗生素,能特异性地抑制由焦磷酸多氢酚介导的蛋白质天冬酰胺基残基的糖基化。通过氨基糖分析,缺乏[14C]氨基葡萄糖和[3H]甘露糖的结合以及伴刀豆球蛋白A结合的研究,在每毫升0.5微克衣霉素的存在下合成的纤连蛋白未被糖基化。从鸡胚成纤维细胞中分离并在体外添加到转化细胞中的非糖基化纤连蛋白与糖基化蛋白在促进更正常的成纤维细胞表型(包括细胞扁平化,细胞过程延长和细胞平行排列)方面一样有效。非糖基化蛋白在介导细胞与胶原蛋白的附着和在塑料上的扩散以及福尔马林固定的绵羊红细胞的凝集方面也与糖基化物种一样有效。非糖基化蛋白在体外对蛋白水解的敏感性是糖基化蛋白的两倍,这是以前对完整细胞的研究所建议的[Olden,K.,Pratt,R.M. &Yamada,K.M. (1978)Cell 13,461-473]。我们得出结论,纤连蛋白的碳水化合物部分对于介导该糖蛋白的许多生物学活性而言不是必需的。

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