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N-连接寡糖链在麻疹病毒血凝素蛋白加工及抗原性中的作用

Role of N-linked oligosaccharide chains in the processing and antigenicity of measles virus haemagglutinin protein.

作者信息

Hu A, Cattaneo R, Schwartz S, Norrby E

机构信息

Department of Virology, School of Medicine, Karolinska Institute, Stockholm, Sweden.

出版信息

J Gen Virol. 1994 May;75 ( Pt 5):1043-52. doi: 10.1099/0022-1317-75-5-1043.

Abstract

The effects of N-linked oligosaccharides on the haemagglutinin (H) protein of measles virus (MV) were assessed with respect to the processing and antigenicity of the molecule. The functional glycosylation sites on the H protein were determined by eliminating each of the five potential positions, Asn-168, Asn-187, Asn-200, Asn-215 and Asn-238, for N-linked glycosylation by oligonucleotide-directed mutagenesis on a cDNA clone. Expression of the mutant H proteins in BHK-21 cells by a recombinant vaccinia virus encoding T7 polymerase indicated that the first four sites were used in the H glycoprotein for the addition of N-linked oligosaccharide chains. Heterogeneity of oligosaccharide processing was demonstrated. One of the four glycosylation sites had a different carbohydrate structure from those of the other three glycosylation sites and this varied glycosylation was responsible for the appearance of two forms of the H protein. The functional glycosylation sites were systematically removed in various combinations from the H protein to form a panel of mutants in which the role of carbohydrate chains, singly or in different combinations, could be evaluated. Investigations of these glycosylation mutants indicated that (i) two of the four individual carbohydrate side-chains have a large influence on the antigenicity of the molecule; (ii) individual carbohydrate side-chains have little effect on the folding and oligomerization of the molecule, and are not sufficient or necessary alone to facilitate the transport of the molecule to the plasma membrane; (iii) at least two carbohydrate side-chains are required for the H protein to move along the exocytic pathway to the plasma membrane and various combinations of oligosaccharide side-chains, irrespective of the carbohydrate localizations, influence equally the processing of the molecule.

摘要

针对麻疹病毒(MV)血凝素(H)蛋白的加工和抗原性,评估了N-连接寡糖对该蛋白的影响。通过在cDNA克隆上进行寡核苷酸定向诱变,消除H蛋白上N-连接糖基化的五个潜在位点(Asn-168、Asn-187、Asn-200、Asn-215和Asn-238)中的每一个,来确定H蛋白上的功能性糖基化位点。通过编码T7聚合酶的重组痘苗病毒在BHK-21细胞中表达突变型H蛋白,结果表明前四个位点用于H糖蛋白上N-连接寡糖链的添加。寡糖加工的异质性得到了证实。四个糖基化位点之一具有与其他三个糖基化位点不同的碳水化合物结构,这种不同的糖基化导致了H蛋白两种形式的出现。从H蛋白中以各种组合系统地去除功能性糖基化位点,以形成一组突变体,在这些突变体中,可以评估碳水化合物链单独或不同组合的作用。对这些糖基化突变体的研究表明:(i)四个单独的碳水化合物侧链中的两个对分子的抗原性有很大影响;(ii)单个碳水化合物侧链对分子的折叠和寡聚化影响很小,单独不足以或不必要促进分子向质膜的转运;(iii)H蛋白沿着胞吐途径移动到质膜需要至少两个碳水化合物侧链,并且寡糖侧链的各种组合,无论碳水化合物的定位如何,对分子的加工有同等影响。

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