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单纯疱疹病毒1型的糖蛋白C对于该病毒逃避抗体非依赖性补体介导的病毒失活以及病毒感染细胞的裂解至关重要。

Glycoprotein C of herpes simplex virus type 1 is essential for the virus to evade antibody-independent complement-mediated virus inactivation and lysis of virus-infected cells.

作者信息

Hidaka Y, Sakai Y, Toh Y, Mori R

机构信息

Department of Virology, School of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

J Gen Virol. 1991 Apr;72 ( Pt 4):915-21. doi: 10.1099/0022-1317-72-4-915.

Abstract

Glycoprotein C (gC) of herpes simplex virus type 1 (HSV-1) is a receptor for the complement component C3b. We have previously isolated HSV-1 gC- strains (TN1, TN2 and TN3) from a patient with recurrent keratitis at three different times. These are very rare isolates because gC was thought to be essential for the virus in vivo. To determine whether gC modifies the interaction of complement with cell-free virus or virus-infected cells, we constructed gC+ recombinant viruses in which the intact gC gene of strain KOS was inserted into the TN1 virus genome. TN1 virus was inactivated by complement and TN1 virus-infected cells were lysed by complement; however, gC+ recombinant viruses became resistant to these effects of complement. These results suggest a role for gC in protection of both the virion envelope and the infected cell surface against damage by complement. TN1 virus was inactivated by complement from rats (Wistar, WKA, F344 and SD), guinea-pigs (Hartley) and humans, but not by complement from mice (C3H, DDD and BALB/c), which indicates that mice seem to be inappropriate as an experimental model for the study of HSV infection in which complement factors need to be considered.

摘要

单纯疱疹病毒1型(HSV-1)的糖蛋白C(gC)是补体成分C3b的受体。我们之前曾在三个不同时间从一名复发性角膜炎患者身上分离出HSV-1 gC-毒株(TN1、TN2和TN3)。这些是非常罕见的分离株,因为gC被认为对病毒在体内生存至关重要。为了确定gC是否改变补体与无细胞病毒或病毒感染细胞的相互作用,我们构建了gC+重组病毒,其中将毒株KOS的完整gC基因插入TN1病毒基因组中。TN1病毒被补体灭活,TN1病毒感染的细胞被补体裂解;然而,gC+重组病毒对补体的这些作用产生了抗性。这些结果表明gC在保护病毒粒子包膜和感染细胞表面免受补体损伤方面发挥了作用。TN1病毒被来自大鼠(Wistar、WKA、F344和SD)、豚鼠(Hartley)和人类的补体灭活,但不被来自小鼠(C3H、DDD和BALB/c)的补体灭活,这表明在需要考虑补体因子的HSV感染研究中,小鼠似乎不是一个合适的实验模型。

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