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由伪狂犬病病毒和单纯疱疹病毒1同源物保守结构域组成的糖蛋白H嵌合体的功能特性

Functional Characterization of Glycoprotein H Chimeras Composed of Conserved Domains of the Pseudorabies Virus and Herpes Simplex Virus 1 Homologs.

作者信息

Böhm Sebastian W, Backovic Marija, Klupp Barbara G, Rey Felix A, Mettenleiter Thomas C, Fuchs Walter

机构信息

Friedrich-Loeffler-Institut, Federal Research Institute for Animal Health, Institute of Molecular Virology and Cell Biology, Greifswald-Insel Riems, Germany.

Institut Pasteur, Unité de Virologie Structurale, Département de Virologie and CNRS Unité Mixte de Recherches 3569, Paris, France.

出版信息

J Virol. 2015 Oct 21;90(1):421-32. doi: 10.1128/JVI.01985-15. Print 2016 Jan 1.

Abstract

UNLABELLED

Membrane fusion is indispensable for entry of enveloped viruses into host cells. The conserved core fusion machinery of the Herpesviridae consists of glycoprotein B (gB) and the gH/gL complex. Recently, crystal structures of gH/gL of herpes simplex virus 2 (HSV-2) and Epstein-Barr virus and of a core fragment of pseudorabies virus (PrV) gH identified four structurally conserved gH domains. To investigate functional conservation, chimeric genes encoding combinations of individual domains of PrV and herpes simplex virus 1 (HSV-1) gH were expressed in rabbit kidney cells, and their processing and transport to the cell surface, as well as activity in fusion assays including gB, gD, and gL of PrV or HSV-1, were analyzed. Chimeric gH containing domain I of HSV-1 and domains II to IV of PrV exhibited limited fusion activity in the presence of PrV gB and gD and HSV-1 gL, but not of PrV gL. More strikingly, chimeric gH consisting of PrV domains I to III and HSV-1 domain IV exhibited considerable fusion activity together with PrV gB, gD, and gL. Replacing PrV gB with the HSV-1 protein significantly enhanced this activity. A cell line stably expressing this chimeric gH supported replication of gH-deleted PrV. Our results confirm the specificity of domain I for gL binding, demonstrate functional conservation of domain IV in two alphaherpesviruses from different genera, and indicate species-specific interactions of this domain with gB. They also suggest that gH domains II and III might form a structural and functional unit which does not tolerate major substitutions.

IMPORTANCE

Envelope glycoprotein H (gH) is essential for herpesvirus-induced membrane fusion, which is required for host cell entry and viral spread. Although gH is structurally conserved within the Herpesviridae, its precise role and its interactions with other components of the viral fusion machinery are not fully understood. Chimeric proteins containing domains of gH proteins from different herpesviruses can serve as tools to elucidate the molecular basis of gH function. The present study shows that the C-terminal part of human herpesvirus 1 (herpes simplex virus 1) gH can functionally substitute for the corresponding part of suid herpesvirus 1 (pseudorabies virus) gH, whereas other tested combinations proved to be nonfunctional. Interestingly, the exchangeable fragment included the membrane-proximal end of the gH ectodomain (domain IV), which is most conserved in sequence and structure and might be capable of transient membrane interaction during fusion.

摘要

未标记

膜融合对于包膜病毒进入宿主细胞至关重要。疱疹病毒科保守的核心融合机制由糖蛋白B(gB)和gH/gL复合物组成。最近,单纯疱疹病毒2(HSV-2)和爱泼斯坦-巴尔病毒的gH/gL晶体结构以及伪狂犬病病毒(PrV)gH的核心片段鉴定出四个结构保守的gH结构域。为了研究功能保守性,在兔肾细胞中表达了编码PrV和单纯疱疹病毒1(HSV-1)gH各个结构域组合的嵌合基因,并分析了它们的加工、向细胞表面的转运以及在包括PrV或HSV-1的gB、gD和gL的融合试验中的活性。含有HSV-1结构域I和PrV结构域II至IV的嵌合gH在存在PrV gB和gD以及HSV-1 gL但不存在PrV gL的情况下表现出有限的融合活性。更引人注目的是,由PrV结构域I至III和HSV-1结构域IV组成的嵌合gH与PrV gB、gD和gL一起表现出相当大的融合活性。用HSV-1蛋白替代PrV gB显著增强了这种活性。稳定表达这种嵌合gH的细胞系支持缺失gH的PrV的复制。我们的结果证实了结构域I与gL结合的特异性,证明了来自不同属的两种甲型疱疹病毒中结构域IV的功能保守性,并表明该结构域与gB存在种属特异性相互作用。它们还表明gH结构域II和III可能形成一个不容忍重大替换的结构和功能单元。

重要性

包膜糖蛋白H(gH)对于疱疹病毒诱导的膜融合至关重要,而膜融合是宿主细胞进入和病毒传播所必需的。尽管gH在疱疹病毒科内结构保守,但其确切作用及其与病毒融合机制其他成分的相互作用尚未完全了解。含有来自不同疱疹病毒的gH蛋白结构域的嵌合蛋白可作为阐明gH功能分子基础的工具。本研究表明,人类疱疹病毒1(单纯疱疹病毒1)gH的C末端部分在功能上可替代猪疱疹病毒1(伪狂犬病病毒)gH的相应部分,而其他测试组合被证明无功能。有趣的是,可交换片段包括gH胞外结构域的膜近端末端(结构域IV),其在序列和结构上最为保守,并且在融合过程中可能能够与膜进行短暂相互作用。

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