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补体成分C3b与单纯疱疹病毒1型糖蛋白gC的结合:gC结合位点的定位及低传代临床分离株中保守C3b结合的证明

Binding of complement component C3b to glycoprotein gC of herpes simplex virus type 1: mapping of gC-binding sites and demonstration of conserved C3b binding in low-passage clinical isolates.

作者信息

Friedman H M, Glorioso J C, Cohen G H, Hastings J C, Harris S L, Eisenberg R J

出版信息

J Virol. 1986 Nov;60(2):470-5. doi: 10.1128/JVI.60.2.470-475.1986.

Abstract

The sites on glycoprotein gC of herpes simplex virus type 1 (HSV-1) which bind complement component C3b were evaluated by using anti-gC monoclonal antibodies and mutants which have alterations at defined regions of the glycoprotein. Monoclonal antibodies were incubated with HSV-1-infected cells in a competitive assay to block C3b binding. Each of 12 different monoclonals, which recognize the four major antigenic sites of gC, completely inhibited C3b binding. With this approach, no one antigenic group on gC could be assigned as the C3b-binding region. Next, 21 gC mutants were evaluated for C3b binding, including 1 which failed to synthesize gC, 4 which synthesized truncated forms of the glycoprotein such that gC did not insert into the cell's membrane, and 16 which expressed gC on the cell's surface but which had mutations in various antigenic groups. Eleven strains did not bind C3b. This included the 1 strain which did not synthesize gC, the 4 strains which secreted gC without inserting the glycoprotein into the cell membrane, and 6 of 16 strains which expressed gC on the cell surface. In these six strains, the mutations were at three different antigenic sites. One hypothesis to explain these findings is that C3b binding is modified by changes in the conformation of gC which develop either after antibodies bind to gC or as a result of mutations in the gC gene. Attachment of C3b to gC was also evaluated in 31 low-passage clinical isolates of HSV-1. Binding was detected with each HSV-1 isolate, but not with nine HSV-2 isolates. Therefore, although mutants that lack C3b binding are readily selected in vitro, the C3b-binding function of gC is maintained in vivo. These results indicate that the sites on gC that bind C3b are different from those that bind monoclonal antibodies, that antibodies directed against all sites on gC block C3b binding, and that C3b binding is a conserved function of gC in vivo.

摘要

利用抗gC单克隆抗体以及在糖蛋白特定区域有改变的突变体,对单纯疱疹病毒1型(HSV-1)糖蛋白gC上结合补体成分C3b的位点进行了评估。在竞争性试验中,将单克隆抗体与HSV-1感染的细胞一起孵育,以阻断C3b的结合。识别gC四个主要抗原位点的12种不同单克隆抗体中的每一种都完全抑制了C3b的结合。通过这种方法,无法确定gC上的哪一个抗原基团是C3b结合区域。接下来,对21个gC突变体进行了C3b结合评估,其中1个无法合成gC,4个合成了糖蛋白的截短形式,导致gC无法插入细胞膜,16个在细胞表面表达gC,但在不同抗原基团中有突变。11个菌株不结合C3b。这包括1个不合成gC的菌株、4个分泌gC但未将糖蛋白插入细胞膜的菌株,以及16个在细胞表面表达gC的菌株中的6个。在这6个菌株中,突变发生在三个不同的抗原位点。一种解释这些发现的假说是,C3b结合会因gC构象的变化而改变,这种变化要么在抗体与gC结合后发生,要么是gC基因突变的结果。还对31株低传代HSV-1临床分离株的C3b与gC的结合进行了评估。在每一株HSV-1分离株中都检测到了结合,但在9株HSV-2分离株中未检测到。因此,尽管在体外很容易筛选出缺乏C3b结合的突变体,但gC的C3b结合功能在体内得以维持。这些结果表明,gC上结合C3b的位点与结合单克隆抗体的位点不同,针对gC所有位点的抗体都能阻断C3b结合,并且C3b结合是gC在体内的一种保守功能。

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