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牛疱疹病毒1型糖蛋白gI和gIII在转染鼠细胞中的表达。

Expression of bovine herpesvirus 1 glycoproteins gI and gIII in transfected murine cells.

作者信息

Fitzpatrick D R, Zamb T, Parker M D, van Drunen Littel-van den Hurk S, Babiuk L A, Lawman M J

机构信息

Department of Veterinary Microbiology, University of Saskatchewan, Saskatoon, Canada.

出版信息

J Virol. 1988 Nov;62(11):4239-48. doi: 10.1128/JVI.62.11.4239-4248.1988.

Abstract

Genes encoding two of the major glycoproteins of bovine herpesvirus 1 (BHV-1), gI and gIII, were cloned into the eucaryotic expression vectors pRSVcat and pSV2neo and transfected into murine LMTK- cells, and cloned cell lines were established. The relative amounts of gI or gIII expressed from the two vectors were similar. Expression of gI was cell associated and localized predominantly in the perinuclear region, but nuclear and plasma membrane staining was also observed. Expression of gI was additionally associated with cell fusion and the formation of polykaryons and giant cells. Expression of gIII was localized predominantly in the nuclear and plasma membranes. Radioimmunoprecipitation in the presence or absence of tunicamycin revealed that the recombinant glycoproteins were proteolytically processed and glycosylated and had molecular weights similar to those of the forms of gI and gIII expressed in BHV-1-infected bovine cells. However, both recombinant glycoproteins were glycosylated to a lesser extent than were the forms found in BHV-1-infected bovine cells. For gI, a deficiency in N-linked glycosylation of the amino-terminal half of the protein was identified; for gIII, a deficiency in O-linked glycosylation was implicated. The reactivity pattern of a panel of gI- and gIII-specific monoclonal antibodies, including six which recognize conformation-dependent epitopes, was found to be unaffected by the glycosylation differences and was identical for transfected or BHV-1-infected murine cells. Use of the transfected cells as targets in immune-mediated cytotoxicity assays demonstrated the functional recognition of recombinant gI and gIII by murine antibody and cytotoxic T lymphocytes. Immunization of mice with the transfected cells elicited BHV-1-specific virus-neutralizing antibody, thus verifying the antigenic authenticity of the recombinant glycoproteins and the important role of gI and gIII as targets of the immune response to BHV-1 in this murine model system.

摘要

编码牛疱疹病毒1型(BHV - 1)两种主要糖蛋白gI和gIII的基因被克隆到真核表达载体pRSVcat和pSV2neo中,并转染到鼠LMTK - 细胞中,进而建立了克隆细胞系。从这两种载体表达的gI或gIII的相对量相似。gI的表达与细胞相关,主要定位于核周区域,但也观察到细胞核和质膜染色。gI的表达还与细胞融合以及多核体和巨细胞的形成有关。gIII的表达主要定位于细胞核和质膜。在有或无衣霉素存在的情况下进行放射免疫沉淀显示,重组糖蛋白经过蛋白水解加工和糖基化,其分子量与在感染BHV - 1的牛细胞中表达的gI和gIII形式相似。然而,两种重组糖蛋白的糖基化程度均低于在感染BHV - 1的牛细胞中发现的形式。对于gI,发现该蛋白氨基末端一半的N - 连接糖基化存在缺陷;对于gIII,则暗示存在O - 连接糖基化缺陷。一组gI和gIII特异性单克隆抗体(包括六种识别构象依赖性表位的抗体)的反应模式不受糖基化差异的影响,并且对于转染或感染BHV - 1的鼠细胞是相同的。在免疫介导的细胞毒性试验中使用转染细胞作为靶标,证明了鼠抗体和细胞毒性T淋巴细胞对重组gI和gIII的功能识别。用转染细胞免疫小鼠可引发BHV - 1特异性病毒中和抗体,从而验证了重组糖蛋白的抗原真实性以及gI和gIII作为该鼠模型系统中针对BHV - 1免疫反应靶标的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec52/253857/afce4b53a2eb/jvirol00090-0339-a.jpg

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