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The glycoproteins of porcine reproductive and respiratory syndrome virus and their role in infection and immunity.

机译:猪繁殖与呼吸综合征病毒的糖蛋白及其在感染和免疫中的作用。

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摘要

The porcine reproductive and respiratory syndrome virus (PRRSV) is an economically important pathogen of swine and is known to cause abortion and infertility in pregnant sows and respiratory distress in piglets. PRRSV contains a major glycoprotein (GP5) and three minor glycoproteins (GP2a, GP3, and GP4) on the virion envelope, all of which are required for infectious virus production. To study their interactions amongst each other and with a cellular receptor for PRRSV, CD163, I cloned each of the viral glycoproteins and CD163 in various expression vectors. My studies have shown that while the GP2a, GP3, and GP4 are co-translationally glycosylated, the GP5 is post-translationally glycosylated. By using co-immunoprecipitation (co-IP) assays, strong interaction was demonstrated between GP4 and GP5 proteins, although weak interactions among the other envelope glycoproteins were also detected. Further, GP4 was found to mediate interactions leading to formation of multiprotein glycoprotein complex. My results also show that GP2a and GP4 proteins are the only two GPs that specifically interact with the CD163 molecule and that glycosylation of these GPs is required for efficient interaction. Based on these studies, I have developed an interactome map of the viral GPs and CD163 and have proposed a model of the viral glycoprotein complex and its interaction with CD163. Studies reported here also show that glycan addition at residue 184 (N184) of GP2a, and residues N42, N50, and N131 of GP3 is essential for recovery of infectious virus. Although single site glycosylation mutants of GP4 had no effect on infectious virus production, introduction of double mutations was lethal. The loss of glycan moieties of GP2a, GP3, and GP4 proteins had no effect on host neutralizing antibody production. Overall, I conclude that the PRRSV glycoproteins are co-translationally and post-translationally glycosylated, the GP4 protein is central to mediating interglycoprotein interactions, and along with GP2a, serves as the viral attachment protein that is responsible for interactions with the viral receptor, CD163. Further, glycosylation of GP2a, GP3, and GP4 proteins is required for infectious virus production, efficient interaction with CD163, but does not play any role in neutralizing antibody response in infected animals.
机译:猪繁殖与呼吸综合症病毒(PRRSV)是猪的一种经济上重要的病原体,已知会引起妊娠母猪的流产和不育,以及仔猪的呼吸窘迫。 PRRSV在病毒体包膜上包含一个主要糖蛋白(GP5)和三个次要糖蛋白(GP2a,GP3和GP4),所有这些都是感染性病毒生产所必需的。为了研究它们之间的相互作用以及与PRRSV CD163的细胞受体的相互作用,我在各种表达载体中克隆了每种病毒糖蛋白和CD163。我的研究表明,虽然GP2a,GP3和GP4被共翻译糖基化,但GP5被翻译后糖基化。通过使用共免疫沉淀(co-IP)分析,虽然在其他包膜糖蛋白之间也检测到弱相互作用,但在GP4和GP5蛋白之间显示出强相互作用。此外,发现GP4介导相互作用,导致形成多蛋白糖蛋白复合物。我的结果还表明,GP2a和GP4蛋白是仅有的两个与CD163分子特异性相互作用的GP,有效相互作用需要这些GP的糖基化。基于这些研究,我开发了病毒GP和CD163的相互作用图谱,并提出了病毒糖蛋白复合物及其与CD163相互作用的模型。此处报道的研究还表明,在GP2a的184位残基(N184)以及GP3的N42,N50和N131位残基上添加聚糖对于感染性病毒的恢复至关重要。尽管GP4的单位糖基化突变体对感染性病毒的产生没有影响,但引入双重突变是致命的。 GP2a,GP3和GP4蛋白的聚糖部分丢失对宿主中和抗体的产生没有影响。总的来说,我得出的结论是,PRRSV糖蛋白被共翻译和翻译后糖基化,GP4蛋白是介导糖蛋白间相互作用的关键,并且与GP2a一起充当负责与病毒受体CD163相互作用的病毒附着蛋白。 。此外,GP2a,GP3和GP4蛋白的糖基化是传染性病毒生产,与CD163的有效相互作用所必需的,但在中和被感染动物中的抗体反应中没有任何作用。

著录项

  • 作者

    Das, Phani Bhusan.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Agriculture Animal Pathology.;Biology Virology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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