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伪狂犬病毒糖蛋白 H 的跨膜域和胞质尾对膜融合的功能相关性。

Functional Relevance of the Transmembrane Domain and Cytoplasmic Tail of the Pseudorabies Virus Glycoprotein H for Membrane Fusion.

机构信息

Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, Greifswald-Insel Riems, Germany.

Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, Greifswald-Insel Riems, Germany

出版信息

J Virol. 2018 May 29;92(12). doi: 10.1128/JVI.00376-18. Print 2018 Jun 15.

Abstract

Herpesvirus membrane fusion depends on the core fusion machinery, comprised of glycoproteins B (gB) and gH/gL. Although gB structurally resembles autonomous class III fusion proteins, it strictly depends on gH/gL to drive membrane fusion. Whether the gH/gL complex needs to be membrane anchored to fulfill its function and which role the gH cytoplasmic (CD) and transmembrane domains (TMD) play in fusion is unclear. While the gH CD and TMD play an important role during infection, soluble gH/gL of herpes simplex virus 1 (HSV-1) seems to be sufficient to mediate cell-cell fusion in transient assays, arguing against an essential contribution of the CD and TMD. To shed more light on this apparent discrepancy, we investigated the role of the CD and TMD of the related alphaherpesvirus pseudorabies virus (PrV) gH. For this purpose, we expressed C-terminally truncated and soluble gH and replaced the TMD with a glycosylphosphatidylinositol (gpi) anchor. We also generated chimeras containing the TMD and/or CD of PrV gD or HSV-1 gH. Proteins were characterized in cell-based fusion assays and during virus infection. Although truncation of the CD resulted in decreased membrane fusion activity, the mutant proteins still supported replication of gH-negative PrV, indicating that the PrV gH CD is dispensable for viral replication. In contrast, PrV gH lacking the TMD, membrane-anchored via a lipid linker, or comprising the PrV gD TMD were nonfunctional, highlighting the essential role of the gH TMD for function. Interestingly, despite low sequence identity, the HSV-1 gH TMD could substitute for the PrV gH TMD, pointing to functional conservation. Enveloped viruses depend on membrane fusion for virus entry. While this process can be mediated by only one or two proteins, herpesviruses depend on the concerted action of at least three different glycoproteins. Although gB has features of bona fide fusion proteins, it depends on gH and its complex partner, gL, for fusion. Whether gH/gL prevents premature fusion or actively triggers gB-mediated fusion is unclear, and there are contradictory results on whether gH/gL function requires stable membrane anchorage or whether the ectodomains alone are sufficient. Our results show that in pseudorabies virus gH, the transmembrane anchor plays an essential role for gB-mediated fusion while the cytoplasmic tail is not strictly required.

摘要

疱疹病毒的膜融合依赖于核心融合机制,该机制由糖蛋白 B(gB)和 gH/gL 组成。尽管 gB 在结构上类似于自主的 III 类融合蛋白,但它严格依赖于 gH/gL 来驱动膜融合。gH/gL 复合物是否需要膜锚定才能发挥其功能,以及 gH 的细胞质(CD)和跨膜结构域(TMD)在融合中的作用尚不清楚。虽然 gH CD 和 TMD 在感染过程中起着重要作用,但单纯疱疹病毒 1(HSV-1)的可溶性 gH/gL 似乎足以在瞬时测定中介导细胞-细胞融合,这表明 CD 和 TMD 的作用并不重要。为了更清楚地了解这一明显的差异,我们研究了相关的α疱疹病毒伪狂犬病病毒(PrV)gH 的 CD 和 TMD 的作用。为此,我们表达了 C 端截断的可溶性 gH,并将 TMD 替换为糖基磷脂酰肌醇(gpi)锚。我们还生成了包含 PrV gD 或 HSV-1 gH 的 TMD 和/或 CD 的嵌合体。在基于细胞的融合测定和病毒感染过程中对蛋白质进行了表征。尽管 CD 的截断导致膜融合活性降低,但突变蛋白仍支持 gH 阴性 PrV 的复制,表明 PrV gH CD 对于病毒复制是可有可无的。相比之下,缺乏 TMD 的 PrV gH、通过脂质接头锚定在膜上的 PrV gH 或包含 PrV gD TMD 的 PrV gH 是无功能的,这突出了 gH TMD 对功能的重要性。有趣的是,尽管序列同一性低,但 HSV-1 gH TMD 可以替代 PrV gH TMD,表明功能保守。包膜病毒依赖于膜融合进入病毒。虽然这个过程可以由一个或两个蛋白介导,但疱疹病毒依赖于至少三种不同糖蛋白的协同作用。尽管 gB 具有真正的融合蛋白的特征,但它依赖于 gH 和其复杂的伴侣 gL 来融合。gH/gL 是防止过早融合还是主动触发 gB 介导的融合尚不清楚,而且关于 gH/gL 功能是否需要稳定的膜锚定,或者仅仅是外显子是否足够,存在矛盾的结果。我们的研究结果表明,在伪狂犬病病毒 gH 中,跨膜锚对于 gB 介导的融合是必需的,而细胞质尾巴不是严格必需的。

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