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Herpes Simplex Virus Glycoprotein D Interferes with Binding of Herpesvirus Entry Mediator to Its Ligands through Downregulation and Direct Competition▿

机译:单纯疱疹病毒糖蛋白D通过下调和直接竞争干扰疱疹病毒进入介体与其配体的结合▿

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摘要

To initiate membrane fusion and virus entry, herpes simplex virus (HSV) gD binds to a cellular receptor such as herpesvirus entry mediator (HVEM). HVEM is a tumor necrosis factor (TNF) receptor family member with four natural ligands that either stimulate (LIGHT and LTα) or inhibit (BTLA and CD160) T cell function. We hypothesized that the interaction of gD with HVEM affects the binding of natural ligands, thereby modulating the immune response during infection. Here, we investigated the effect that gD has on the interaction of HVEM with its natural ligands. First, HSV gD on virions or cells downregulates HVEM from the cell surface. Similarly, trans-interaction with BTLA or LIGHT also downregulates HVEM from the cell surface, suggesting that HSV may subvert a natural mechanism for regulating HVEM activity. Second, we showed that wild-type gD had the lowest affinity for HVEM compared with the four natural ligands. Moreover, gD directly competed for binding to HVEM with BTLA but not LTα or LIGHT, indicating the possibility that gD selectively controls HVEM signals. On the other hand, natural ligands influence the use of HVEM by HSV. For instance, soluble BTLA, LTα, and LIGHT inhibited the binding of wild-type gD to HVEM, and soluble BTLA and LTα blocked HSV infection of HVEM-expressing cells. Thus, gD is at the center of the interplay between HVEM and its ligands. It can interfere with HVEM function in two ways, by competing with the natural ligands and by downregulating HVEM from the cell surface.
机译:为了启动膜融合和病毒进入,单纯疱疹病毒(HSV)gD与细胞受体(例如疱疹病毒进入介体(HVEM))结合。 HVEM是具有四个天然配体的肿瘤坏死因子(TNF)受体家族成员,它们可以刺激(LIGHT和LTα)或抑制(BTLA和CD160)T细胞功能。我们假设gD与HVEM的相互作用会影响天然配体的结合,从而调节感染过程中的免疫反应。在这里,我们研究了gD对HVEM及其天然配体相互作用的影响。首先,病毒颗粒或细胞上的HSV gD从细胞表面下调HVEM。同样,与BTLA或LIGHT的反式相互作用也会下调细胞表面的HVEM,这表明HSV可能会破​​坏调节HVEM活性的天然机制。其次,我们表明与四种天然配体相比,野生型gD对HVEM的亲和力最低。而且,gD直接与BTLA竞争与HVEM的结合,而不与LTα或LIGHT竞争,这表明gD选择性控制HVEM信号的可能性。另一方面,天然配体会影响HSV对HVEM的使用。例如,可溶性BTLA,LTα和LIGHT抑制了野生型gD与HVEM的结合,而可溶性BTLA和LTα阻止了HVEM表达细胞的HSV感染。因此,gD在HVEM及其配体之间相互作用的中心。它可以通过两种方式干扰HVEM功能,即与天然配体竞争以及从细胞表面下调HVEM。

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