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表达1型和2型单纯疱疹病毒糖蛋白C的转染细胞上的C3b受体活性

C3b receptor activity on transfected cells expressing glycoprotein C of herpes simplex virus types 1 and 2.

作者信息

Seidel-Dugan C, Ponce de Leon M, Friedman H M, Fries L F, Frank M M, Cohen G H, Eisenberg R J

机构信息

Department of Microbiology, School of Dental Medicine, University of Pennsylvania, Philadelphia 19104.

出版信息

J Virol. 1988 Nov;62(11):4027-36. doi: 10.1128/JVI.62.11.4027-4036.1988.

Abstract

Glycoprotein C from herpes simplex virus type 1 (gC-1 from HSV-1) acts as a receptor for the C3b fragment of the third component of complement on HSV-1-infected cell surfaces. Direct binding assays with purified gC-1 and C3b demonstrate that other viral and cellular proteins are not required for this interaction. Although C3b receptor activity is not expressed on HSV-2-infected cell surfaces, purified gC-2 specifically binds C3b in direct binding assays, suggesting that gC-1 and gC-2 are functionally similar. Here, we used a transient transfection system to further characterize the role of gC-1 and gC-2 as C3b receptors and to localize the site(s) on gC involved in C3b binding. The genes for gC-1 and gC-2 were each cloned into a eucaryotic expression vector containing the Rous sarcoma virus long terminal repeat as the promoter and transfected into NIH 3T3 cells. The expressed proteins were similar in molecular size, extent of carbohydrate processing, and antigenic properties to gC-1 and gC-2 purified from infected cells. Using a double-label immunofluorescence assay, we found that both gC-1 and gC-2 were expressed on the surfaces of transfected cells and bound C3b. These results suggest that other proteins expressed during HSV-2 infection prevent receptor activity. We constructed three in-frame deletion mutants of gC-2 to identify domains on the protein important for C3b receptor activity. These mutants lacked amino acids 26 to 73, 219 to 244, or 318 to 346. The mutant protein lacking residues 26 to 73 was reactive with two monoclonal antibodies recognizing distinct epitopes, showed a wild-type pattern of carbohydrate processing, and bound C3b on the transfected cell surface. These results suggest that residues 26 to 73 are not involved in C3b binding. The other two mutant proteins were present on the cell surface, but did not bind C3b. In addition, these mutant proteins showed altered patterns of carbohydrate processing, formed aggregates, and were no longer recognized by the monoclonal antibodies. These properties indicate that removal of residues 219 to 244 or 318 to 346 disrupted the native conformation of gC-2, possibly owing to an alteration in the spacing between critical cysteine residues.

摘要

单纯疱疹病毒1型糖蛋白C(HSV-1的gC-1)在HSV-1感染的细胞表面充当补体第三成分C3b片段的受体。用纯化的gC-1和C3b进行的直接结合试验表明,这种相互作用不需要其他病毒蛋白和细胞蛋白。虽然C3b受体活性在HSV-2感染的细胞表面不表达,但在直接结合试验中,纯化的gC-2能特异性结合C3b,这表明gC-1和gC-2在功能上相似。在此,我们使用瞬时转染系统进一步表征gC-1和gC-2作为C3b受体的作用,并确定gC上参与C3b结合的位点。将gC-1和gC-2的基因分别克隆到一个以劳氏肉瘤病毒长末端重复序列为启动子的真核表达载体中,并转染到NIH 3T3细胞中。表达的蛋白在分子大小、糖基化程度和抗原特性方面与从感染细胞中纯化的gC-1和gC-2相似。使用双标记免疫荧光试验,我们发现gC-1和gC-2都在转染细胞的表面表达并结合C3b。这些结果表明,HSV-2感染期间表达的其他蛋白会抑制受体活性。我们构建了gC-2的三个框内缺失突变体,以确定该蛋白上对C3b受体活性重要的结构域。这些突变体缺失了氨基酸26至73、219至244或318至'346。缺失26至73位残基的突变蛋白能与两种识别不同表位的单克隆抗体发生反应,呈现出野生型的糖基化模式,并在转染细胞表面结合C3b。这些结果表明,26至73位残基不参与C3b结合。另外两个突变蛋白存在于细胞表面,但不结合C3b。此外,这些突变蛋白呈现出改变的糖基化模式,形成聚集体,并且不再被单克隆抗体识别。这些特性表明,去除219至244或318至346位残基破坏了gC-2的天然构象,这可能是由于关键半胱氨酸残基之间的间距发生了改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a37a/253832/2874a7409fd3/jvirol00090-0126-a.jpg

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