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Monoclonal Antibodies to Distinct Sites on Herpes Simplex Virus (HSV) Glycoprotein D Block HSV Binding to HVEM

机译:单纯疱疹病毒(HSV)糖蛋白D上不同位点的单克隆抗体阻止HSV与HVEM的结合

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摘要

HVEM (for herpesvirus entry mediator) is a member of the tumor necrosis factor receptor superfamily and mediates entry of many strains of herpes simplex virus (HSV) into normally nonpermissive Chinese hamster ovary (CHO) cells. We used sucrose density centrifugation to demonstrate that purified HSV-1 KOS virions bind directly to a soluble, truncated form of HVEM (HVEMt) in the absence of any other cell-associated components. Therefore, HVEM mediates HSV entry by serving as a receptor for the virus. We previously showed that soluble, truncated forms of HSV glycoprotein D (gDt) bind to HVEMt in vitro. Here we show that antibodies specific for gD, but not the other entry glycoproteins gB, gC, or the gH/gL complex, completely block HSV binding to HVEM. Thus, virion gD is the principal mediator of HSV binding to HVEM. To map sites on virion gD which are necessary for its interaction with HVEM, we preincubated virions with gD-specific monoclonal antibodies (MAbs). MAbs that recognize antigenic sites Ib and VII of gD were the only MAbs which blocked the HSV-HVEM interaction. MAbs from these two groups failed to coprecipitate HVEMt in the presence of soluble gDt, whereas the other anti-gD MAbs coprecipitated HVEMt and gDt. Previous mapping data indicated that site VII includes amino acids 11 to 19 and site Ib includes 222 to 252. The current experiments indicate that these sites contain residues important for HSV binding to HVEM. Group Ib and VII MAbs also blocked HSV entry into HVEM-expressing CHO cells. These results suggest that the mechanism of neutralization by these MAbs is via interference with the interaction between gD in the virus and HVEM on the cell. Group Ia and II MAbs failed to block HSV binding to HVEM yet still neutralized HVEM-mediated entry, suggesting that these MAbs block entry at a step other than HVEM binding.
机译:HVEM(用于疱疹病毒进入介体)是肿瘤坏死因子受体超家族的成员,可介导许多株单纯疱疹病毒(HSV)进入正常不允许的中国仓鼠卵巢(CHO)细胞。我们使用蔗糖密度离心法来证明纯化的HSV-1 KOS病毒体在没有任何其他与细胞相关的组分的情况下直接结合于HVEM(HVEMt)的可溶,截短形式。因此,HVEM通过充当病毒的受体来介导HSV进入。我们先前显示,HSV糖蛋白D(gDt)的可溶性,截短形式在体外与HVEMt结合。在这里,我们显示了对gD具有特异性的抗体,但对其他进入糖蛋白gB,gC或gH / gL复合物没有特异性,完全阻断了HSV与HVEM的结合。因此,病毒体gD是HSV与HVEM结合的主要介质。为了绘制病毒体gD与HVEM相互作用所必需的位点,我们将病毒体与gD特异性单克隆抗体(MAb)预孵育。识别gD抗原位点Ib和VII的MAb是唯一阻止HSV-HVEM相互作用的MAb。在存在可溶性gDt的情况下,这两组的单克隆抗体无法共沉淀HVEMt,而其他抗gD MAb则共同沉淀HVEMt和gDt。先前的作图数据表明,位点VII包含氨基酸11至19,位点Ib包含222至252。当前实验表明,这些位点包含对HSV结合HVEM重要的残基。 Ib和VII MAb组也阻止HSV进入表达HVEM的CHO细胞。这些结果表明,这些单克隆抗体的中和机理是通过干扰病毒中的gD和细胞上的HVEM之间的相互作用。 Ia和IIa组单抗未能阻断HSV与HVEM的结合,但仍中和了HVEM介导的进入,表明这些MAb在除HVEM结合以外的其他步骤阻止了进入。

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