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轮状病毒蛋白组装过程中二硫键形成的细胞内调控

Intracellular manipulation of disulfide bond formation in rotavirus proteins during assembly.

作者信息

Svensson L, Dormitzer P R, von Bonsdorff C H, Maunula L, Greenberg H B

机构信息

Division of Gastroenterology, Stanford University Medical Center, California 94305.

出版信息

J Virol. 1994 Aug;68(8):5204-15. doi: 10.1128/JVI.68.8.5204-5215.1994.

Abstract

Rotavirus undergoes a unique mode of assembly in the rough endoplasmic reticulum (RER) of infected cells. Luminal RER proteins undergo significant cotranslational and posttranslational modifications, including disulfide bond formation. Addition of a reducing agent (dithiothreitol [DTT]) to rotavirus-infected cells did not significantly inhibit translation or disrupt established disulfide bonds in rotavirus proteins but prevented the formation of new disulfide bonds and infectious viral progeny. In DTT-treated, rotavirus-infected cells, all vp4, vp6, and ns28 epitopes but no vp7 epitopes were detected by immunohistochemical staining with a panel of monoclonal antibodies. When oxidizing conditions were reestablished in DTT-treated cells, intramolecular disulfide bonds in vp7 were rapidly and correctly established with the restoration of antigenicity, although prolonged DTT treatment led to the accumulation of permanently misfolded vp7. Electron microscopy revealed that cytosolic assembly of single-shelled particles and budding into the ER was not affected by DTT treatment but that outer capsid assembly was blocked, leading to the accumulation of single-shelled and enveloped intermediate subviral particles in the RER lumen.

摘要

轮状病毒在受感染细胞的糙面内质网(RER)中经历独特的组装模式。内质网腔蛋白经历显著的共翻译和翻译后修饰,包括二硫键形成。向感染轮状病毒的细胞中添加还原剂(二硫苏糖醇 [DTT])不会显著抑制翻译或破坏轮状病毒蛋白中已形成的二硫键,但会阻止新二硫键的形成和感染性病毒后代的产生。在用DTT处理的、感染轮状病毒的细胞中,用一组单克隆抗体进行免疫组织化学染色可检测到所有的vp4、vp6和ns28表位,但未检测到vp7表位。当在经DTT处理的细胞中重新建立氧化条件时,vp7中的分子内二硫键会随着抗原性的恢复而迅速且正确地形成,尽管长时间的DTT处理会导致永久错误折叠的vp7积累。电子显微镜显示,单壳颗粒的胞质组装和出芽进入内质网不受DTT处理的影响,但外衣壳组装被阻断,导致单壳和包膜中间亚病毒颗粒在内质网腔中积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e7e/236464/eaa762fcebfc/jvirol00017-0512-a.jpg

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