Functional assessment of the glycoproteins of a novel Hendra virus variant reveals contrasting fusogenic capacities of the receptor-binding and fusion glycoproteins.

IF 5.1 1区 生物学 Q1 MICROBIOLOGY mBio Pub Date : 2025-02-05 Epub Date: 2024-12-20 DOI:10.1128/mbio.03482-23
Andrew Z Ma, Yao Yu Yeo, Jean F Lee, Colin M Kim, Shahrzad Ezzatpour, Carolina Menchaca, Viraj Upadhye, Edward J Annand, John-Sebastian Eden, Raina K Plowright, Alison J Peel, David W Buchholz, Hector C Aguilar
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Abstract

A novel Hendra virus (HeV) genotype (HeV genotype 2 [HeV-g2]) was recently isolated from a deceased horse, revealing high-sequence conservation and antigenic similarities with the prototypic strain, HeV-g1. As the receptor-binding (G) and fusion (F) glycoproteins of HeV are essential for mediating viral entry, functional characterization of emerging HeV genotypic variants is key to understanding viral entry mechanisms and broader virus-host co-evolution. We first confirmed that HeV-g2 and HeV-g1 glycoproteins share a close phylogenetic relationship, underscoring HeV-g2's relevance to global health. Our in vitro data showed that HeV-g2 glycoproteins induced cell-cell fusion in human cells, shared receptor tropism with HeV-g1, and cross-reacted with antibodies raised against HeV-g1. Despite these similarities, HeV-g2 glycoproteins yielded reduced syncytia formation compared to HeV-g1. By expressing heterotypic combinations of HeV-g2, HeV-g1, and Nipah virus (NiV) glycoproteins, we found that while HeV-g2 G had strong fusion-promoting abilities, HeV-g2 F consistently displayed hypofusogenic properties. These fusion phenotypes were more closely associated with those observed in the related NiV. Further investigation using HeV-g1 and HeV-g2 glycoprotein chimeras revealed that multiple domains may play roles in modulating these fusion phenotypes. Altogether, our findings may establish intrinsic fusogenic capacities of viral glycoproteins as a potential driver behind the emergence of new henipaviral variants.

Importance: HeV is a zoonotic pathogen that causes severe disease across various mammalian hosts, including horses and humans. The identification of unrecognized HeV variants, such as HeV-g2, highlights the need to investigate mechanisms that may drive their evolution, transmission, and pathogenicity. Our study reveals that HeV-g2 and HeV-g1 glycoproteins are highly conserved in identity, function, and receptor tropism, yet they differ in their abilities to induce the formation of multinucleated cells (syncytia), which is a potential marker of viral pathogenesis. By using heterotypic combinations of HeV-g2 with either HeV-g1 or NiV glycoproteins, as well as chimeric HeV-g1/HeV-g2 glycoproteins, we demonstrate that the differences in syncytial formation can be attributed to the intrinsic fusogenic capacities of each glycoprotein. Our data indicate that HeV-g2 glycoproteins have fusion phenotypes closely related to those of NiV and that fusion promotion may be a crucial factor driving the emergence of new henipaviral variants.

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对新型亨德拉病毒变体糖蛋白的功能评估显示,受体结合糖蛋白和融合糖蛋白的致熔能力截然不同。
最近从一匹死马中分离出一种新的亨德拉病毒(HeV)基因型(HeV基因型2 [HeV-g2]),显示出与原型株HeV-g1的高序列保守性和抗原相似性。由于HeV的受体结合(G)和融合(F)糖蛋白对于介导病毒进入至关重要,因此新出现的HeV基因型变异的功能表征是理解病毒进入机制和更广泛的病毒-宿主共同进化的关键。我们首先证实了HeV-g2和HeV-g1糖蛋白具有密切的系统发育关系,强调了HeV-g2与全球健康的相关性。我们的体外数据显示,HeV-g2糖蛋白在人细胞中诱导细胞-细胞融合,与HeV-g1共享受体趋向性,并与HeV-g1抗体交叉反应。尽管有这些相似之处,HeV-g2糖蛋白与HeV-g1相比,合胞体形成减少。通过表达HeV-g2、HeV-g1和尼帕病毒(NiV)糖蛋白的异型组合,我们发现HeV-g2 G具有较强的融合促进能力,而HeV-g2 F始终表现出低融合特性。这些融合表型与相关NiV中观察到的表型更密切相关。对HeV-g1和HeV-g2糖蛋白嵌合体的进一步研究表明,多个结构域可能在调节这些融合表型中发挥作用。总之,我们的发现可能建立了病毒糖蛋白内在的融合能力,作为新的亨尼帕病毒变体出现背后的潜在驱动因素。重要性:戊肝病毒是一种人畜共患病原体,可在各种哺乳动物宿主(包括马和人类)中引起严重疾病。未被识别的HeV变异(如HeV-g2)的发现,凸显了研究可能驱动其进化、传播和致病性的机制的必要性。我们的研究表明,HeV-g2和HeV-g1糖蛋白在身份、功能和受体趋向性方面高度保守,但它们诱导多核细胞(合胞体)形成的能力不同,多核细胞是病毒发病机制的潜在标志。通过使用HeV-g2与HeV-g1或NiV糖蛋白的异型组合,以及嵌合的HeV-g1/HeV-g2糖蛋白,我们证明合胞形成的差异可归因于每种糖蛋白固有的融合能力。我们的数据表明HeV-g2糖蛋白具有与NiV密切相关的融合表型,并且融合促进可能是驱动新亨尼帕病毒变体出现的关键因素。
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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
期刊最新文献
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