Influence of the pre-membrane and envelope proteins on structure, pathogenicity, and tropism of tick-borne encephalitis virus.

IF 3.8 2区 医学 Q2 VIROLOGY
Journal of Virology Pub Date : 2025-09-23 Epub Date: 2025-08-19 DOI:10.1128/jvi.00870-25
Ebba Rosendal, Kyrylo Bisikalo, Stefanie M A Willekens, Marie Lindgren, Jiří Holoubek, Pavel Svoboda, Amanda Lappalainen, Ebba Könighofer, Ekaterina Mirgorodskaya, Rickard Nordén, Federico Morini, William Rosenbaum, Daniel Růžek, Ulf Ahlgren, Maria Anastasina, Andres Merits, Sarah J Butcher, Emma Nilsson, Anna K Överby
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引用次数: 0

Abstract

Tick-borne encephalitis virus (TBEV) is a neurotropic flavivirus that causes thousands of human infections annually. Viral tropism in the brain is determined by the presence of necessary receptors, entry factors, and the ability of the virus to overcome host defenses. The viral structural proteins, pre-membrane (prM), and envelope (E) play an important role in receptor binding, membrane fusion, particle maturation, and antibody neutralization. To understand how these proteins influence virus distribution and tropism in the brain, we generated a chimeric virus harboring the prM and ectodomain of E from TBEV in the background of the low-pathogenic Langat virus (LGTV). We solved the atomic structures of both the chimeric virus and LGTV to compare them to the known TBEV structure. We show that this chimeric virus remains low-pathogenic, while being structurally and antigenically similar to TBEV. Using 3D optical whole brain imaging combined with immunohistochemistry, we found that both LGTV and the chimeric virus primarily infect the cerebral cortex, with no significant differences in their localization or tropism. In contrast, TBEV shows high infection of the cerebellum and a strong preference toward Purkinje cells, indicating that factors other than the prM and E proteins are important for determining TBEV tropism in the brain. Together, this provides new insights into the roles of the structural and non-structural proteins of tick-borne flaviviruses.

Importance: Although an effective vaccine exists, there is no treatment for those infected by the tick-borne encephalitis virus (TBEV). This study aimed to better understand how the virus's surface proteins influence viral tropism and pathogenicity. We created a chimeric virus with prM and E proteins of TBEV in the genetic background of the low-pathogenic Langat virus (LGTV). The chimeric virus remained low pathogenic, similar to LGTV. Both viruses infected similar brain regions, while TBEV showed a strong preference for the cerebellum and Purkinje cells. This means that other parts of the virus, such as non-structural proteins or NCR, likely decide how the virus behaves in the brain. This study also presents the first cryogenic electron microscopy structure of LGTV, the first whole-brain imaging of TBEV infection in mouse brain, and a new model system to study surface proteins in tick-borne flaviviruses-laying groundwork for future studies on viral tropism, antibody cross-reactivity, and virus-receptor interaction.

膜前和包膜蛋白对蜱传脑炎病毒结构、致病性和嗜性的影响。
蜱传脑炎病毒(TBEV)是一种嗜神经黄病毒,每年导致数千人感染。病毒在大脑中的趋向性是由必要的受体、进入因子和病毒克服宿主防御的能力决定的。病毒结构蛋白、膜前蛋白(pre-membrane, prM)和包膜蛋白(envelope, E)在受体结合、膜融合、颗粒成熟和抗体中和等过程中发挥重要作用。为了了解这些蛋白如何影响病毒在大脑中的分布和向性,我们在低致病性Langat病毒(LGTV)的背景下,产生了一种嵌合病毒,其中含有来自TBEV的prM和E的外畴。我们解决了嵌合病毒和LGTV的原子结构,并将它们与已知的TBEV结构进行了比较。我们发现这种嵌合病毒在结构和抗原性上与TBEV相似,但仍然具有低致病性。利用三维光学全脑成像结合免疫组织化学,我们发现LGTV和嵌合病毒主要感染大脑皮层,在定位和向性上没有显著差异。相比之下,TBEV表现出对小脑的高度感染和对浦肯野细胞的强烈偏好,这表明除了prM和E蛋白之外的因素对决定脑内TBEV的倾向很重要。总之,这为蜱传黄病毒的结构蛋白和非结构蛋白的作用提供了新的见解。重要性:虽然存在有效的疫苗,但没有治疗蜱传脑炎病毒(TBEV)感染者的方法。这项研究旨在更好地了解病毒的表面蛋白如何影响病毒的嗜性和致病性。以低致病性Langat病毒(LGTV)为遗传背景,构建了以TBEV的prM和E蛋白为载体的嵌合病毒。嵌合病毒保持低致病性,与LGTV相似。这两种病毒感染相似的大脑区域,而TBEV对小脑和浦肯野细胞表现出强烈的偏好。这意味着病毒的其他部分,如非结构蛋白或NCR,可能决定病毒在大脑中的行为。本研究还首次获得了LGTV的低温电镜结构,首次获得了小鼠脑内TBEV感染的全脑成像,并建立了研究蜱传黄病毒表面蛋白的新模型系统,为进一步研究病毒的趋向性、抗体交叉反应性和病毒-受体相互作用奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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