Mirazimi A, Svensson L
Department of Virology, SMI/Karolinska Institute, Stockholm, Sweden.
J Virol. 1998 May;72(5):3887-92. doi: 10.1128/JVI.72.5.3887-3892.1998.
It is well established that glycosylation is essential for assembly of enveloped viruses, but no information is yet available as to the function of carbohydrates on the nonenveloped but glycosylated rotavirus. We show that tunicamycin and, more pronouncedly, a combination of tunicamycin and brefeldin A treatment caused misfolding of the luminal VP7 protein, leading to interdisulfide bond aggregation. While formation of VP7 aggregates could be prevented under reducing conditions, they reoccurred in less than 30 min after a shift to an oxidizing milieu. Furthermore, while glycosylated VP7 interacted during maturation with protein disulfide isomerase, nonglycosylated VP7 did not, suggesting that glycosylation is a prerequisite for protein disulfide isomerase interaction. While native NSP4, which does not possess S-S bonds, was not dependent on N-linked glycosylation or on protein disulfide isomerase assistance for maturation, nonglycosylated NSP4 was surprisingly found to interact with protein disulfide isomerase, further suggesting that protein disulfide isomerase can act both as an enzyme and as a chaperone. In conclusion, our data suggest that the major function of carbohydrates on VP7 is to facilitate correct disulfide bond formation and protein folding.
糖基化对于包膜病毒的组装至关重要,这一点已得到充分证实,但关于非包膜但糖基化的轮状病毒上碳水化合物的功能尚无相关信息。我们发现衣霉素,更显著的是衣霉素和布雷菲德菌素A联合处理会导致腔内VP7蛋白错误折叠,进而导致二硫键间聚集。虽然在还原条件下可以防止VP7聚集体的形成,但在转移到氧化环境后不到30分钟它们又会重新出现。此外,虽然糖基化的VP7在成熟过程中与蛋白二硫键异构酶相互作用,但非糖基化的VP7则不然,这表明糖基化是蛋白二硫键异构酶相互作用的先决条件。虽然不具备S-S键的天然NSP4在成熟过程中不依赖于N-连接糖基化或蛋白二硫键异构酶的协助,但令人惊讶的是发现非糖基化的NSP4与蛋白二硫键异构酶相互作用,这进一步表明蛋白二硫键异构酶既可以作为一种酶,也可以作为一种伴侣蛋白发挥作用。总之,我们的数据表明VP7上碳水化合物的主要功能是促进正确的二硫键形成和蛋白质折叠。