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鉴定由不同临床株引起的 tick-borne encephalitis 病毒的宿主因子差异。

Identification of Host Factors Differentially Induced by Clinically Diverse Strains of Tick-Borne Encephalitis Virus.

机构信息

School of Biological Sciences, University of Reading, Reading, United Kingdom.

School of Molecular and Cellular Biology, Faculty of Biological Sciences and Astbury Centre for Structural Molecular Biology, University of Leedsgrid.9909.9, Leeds, United Kingdom.

出版信息

J Virol. 2022 Sep 28;96(18):e0081822. doi: 10.1128/jvi.00818-22. Epub 2022 Sep 13.

Abstract

Tick-borne encephalitis virus (TBEV) is an important human arthropod-borne virus that causes tick-borne encephalitis (TBE) in humans. TBEV acutely infects the central nervous system (CNS), leading to neurological symptoms of various severity. No therapeutics are currently available for TBEV-associated disease. Virus strains of various pathogenicity have been described, although the basis of their diverse clinical outcome remains undefined. Work with infectious TBEV requires high-level biocontainment, meaning model systems that can recapitulate the virus life cycle are highly sought. Here, we report the generation of a self-replicating, noninfectious TBEV replicon used to study properties of high (Hypr) and low (Vs) pathogenic TBEV isolates. Using a Spinach2 RNA aptamer and luciferase reporter system, we perform the first direct comparison of Hypr and Vs in cell culture. Infectious wild-type (WT) viruses and chimeras of the nonstructural proteins 3 (NS3) and 5 (NS5) were investigated in parallel to validate the replicon data. We show that Hypr replicates to higher levels than Vs in mammalian cells, but not in arthropod cells, and that the basis of these differences map to the NS5 region, encoding the methyltransferase and RNA polymerase. For both Hypr and Vs strains, NS5 and the viral genome localized to intracellular structures typical of positive-strand RNA viruses. Hypr was associated with significant activation of IRF-3, caspase-3, and caspase-8, while Vs activated Akt, affording protection against caspase-mediated apoptosis. Higher activation of stress-granule proteins TIAR and G3BPI were an additional early feature of Vs but not for Hypr. These findings highlight novel host cell responses driven by NS5 that may dictate the differential clinical characteristics of TBEV strains. This highlights the utility of the TBEV replicons for further virological characterization and antiviral drug screening. Tick-borne encephalitis virus (TBEV) is an emerging virus of the flavivirus family that is spread by ticks and causes neurological disease of various severity. No specific therapeutic treatments are available for TBE, and control in areas of endemicity is limited to vaccination. The pathology of TBEV ranges from mild to fatal, depending on the virus genotype. Characterization of TBEV isolates is challenging due to the requirement for high-containment facilities. Here, we described the construction of novel TBEV replicons that permit a molecular comparison of TBEV isolates of high and low pathogenicity.

摘要

蜱传脑炎病毒(TBEV)是一种重要的人虫媒病毒,可引起蜱传脑炎(TBE)。TBEV 急性感染中枢神经系统(CNS),导致各种严重程度的神经症状。目前尚无针对 TBEV 相关疾病的治疗方法。已经描述了各种致病性的病毒株,尽管它们不同临床结果的基础仍未确定。具有高水平生物安全性的工作需要能够复制病毒生命周期的模型系统,因此对这些模型系统的需求很高。在这里,我们报告了一种自我复制的、非感染性的 TBEV 复制子的生成,该复制子用于研究高致病性(Hypr)和低致病性(Vs)TBEV 分离株的特性。使用 Spinach2 RNA 适体和荧光素酶报告系统,我们在细胞培养中首次直接比较了 Hypr 和 Vs。同时研究了感染性野生型(WT)病毒和非结构蛋白 3(NS3)和 5(NS5)的嵌合体,以验证复制子数据。我们表明,Hypr 在哺乳动物细胞中的复制水平高于 Vs,但在节肢动物细胞中则不然,这些差异的基础映射到编码甲基转移酶和 RNA 聚合酶的 NS5 区域。对于 Hypr 和 Vs 株,NS5 和病毒基因组定位于与正链 RNA 病毒典型的细胞内结构。Hypr 与 IRF-3、半胱天冬酶 3 和半胱天冬酶 8 的显著激活有关,而 Vs 激活 Akt,从而提供对 caspase 介导的细胞凋亡的保护。更高的应激颗粒蛋白 TIAR 和 G3BPI 的激活是 Vs 的另一个早期特征,但不是 Hypr 的特征。这些发现强调了 NS5 驱动的新型宿主细胞反应,这可能决定了 TBEV 株的不同临床特征。这突出了 TBEV 复制子在进一步病毒学表征和抗病毒药物筛选中的效用。 蜱传脑炎病毒(TBEV)是一种新兴的黄病毒科病毒,通过蜱传播,引起各种严重程度的神经疾病。目前尚无针对 TBE 的特定治疗方法,在流行地区的控制仅限于疫苗接种。TBEV 的病理学从轻度到致命不等,取决于病毒基因型。由于需要高生物安全性设施,因此对 TBEV 分离株的特征描述具有挑战性。在这里,我们描述了新型 TBEV 复制子的构建,这些复制子允许对高致病性和低致病性 TBEV 分离株进行分子比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3ba/9517736/b55dd9c20397/jvi.00818-22-f001.jpg

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