Vidal S, Mottet G, Kolakofsky D, Roux L
Department of Microbiology, University of Geneva Medical School, Switzerland.
J Virol. 1989 Feb;63(2):892-900. doi: 10.1128/JVI.63.2.892-900.1989.
The role of glycosylation and of disulfide bonds in the formation of the native structure of the Sendai virus hemagglutinin-neuraminidase (HN) and fusion (F0) glycoproteins was studied. In contrast to the HN and F0 synthesized in vivo, the proteins made from pSP6 transcripts in reticulocyte lysates, whether glycosylated or not, were not recognized by monoclonal antibodies or polyclonal rabbit sera raised against the native proteins; they efficiently reacted only with rabbit antisera raised against the reduced sodium dodecyl sulfate-denatured proteins. These in vitro-made proteins, however, did not contain disulfide bonds. The proteins made in vivo in the presence of tunicamycin, which were also not recognized by the anti-native protein antibodies, did contain disulfide bonds, but they were mainly incorrect interchain disulfide bonds. Moreover, while F0 acquired proper disulfide bonds as soon as it was synthesized under normal conditions in vivo, the disulfides were formed in HN only after a lag of 10 to 30 min. This lag coincides with the delay observed in HN native structure formation. We therefore conclude that the maturation of the HN and F0 proteins depends on the formation of proper intramolecular disulfide bonds, which in turn depends on the previous addition of high-mannose sugars.
研究了糖基化和二硫键在仙台病毒血凝素神经氨酸酶(HN)和融合蛋白(F0)糖蛋白天然结构形成中的作用。与体内合成的HN和F0不同,网织红细胞裂解物中由pSP6转录本产生的蛋白质,无论是否糖基化,均不能被针对天然蛋白质产生的单克隆抗体或兔抗血清识别;它们仅能有效地与针对还原型十二烷基硫酸钠变性蛋白产生的兔抗血清发生反应。然而,这些体外制备的蛋白质不含二硫键。在衣霉素存在下体内产生的蛋白质,同样不能被抗天然蛋白质抗体识别,确实含有二硫键,但主要是不正确的链间二硫键。此外,虽然F0在体内正常条件下一旦合成就能获得正确的二硫键,但HN中的二硫键在延迟10至30分钟后才形成。这种延迟与在HN天然结构形成中观察到的延迟一致。因此,我们得出结论,HN和F0蛋白的成熟取决于正确的分子内二硫键的形成,而这又取决于先前添加的高甘露糖。