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首例海洋瘟病毒——港湾鼠海豚瘟病毒(PhoPeV)的特性分析

Characterization of the First Marine Pestivirus, Phocoena Pestivirus (PhoPeV).

作者信息

Söder Lars, Meyer Denise, Isken Olaf, Tautz Norbert, König Matthias, Postel Alexander, Becher Paul

机构信息

Institute of Virology, Department of Infectious Diseases, University of Veterinary Medicine Hannover, D-30559 Hannover, Germany.

Institute of Virology and Cell Biology, University of Lübeck, D-23562 Lübeck, Germany.

出版信息

Viruses. 2025 Jan 14;17(1):107. doi: 10.3390/v17010107.

Abstract

The first marine pestivirus, Phocoena pestivirus (PhoPeV), isolated from harbor porpoise, has been recently described. To further characterize this unique pestivirus, its host cell tropism and growth kinetics were determined in different cell lines. In addition, the interaction of PhoPeV with innate immunity in porcine epithelial cells and the role of selected cellular factors involved in the viral entry and RNA replication of PhoPeV were investigated in comparison to closely and distantly related pestiviruses. While Bungowannah pestivirus (BuPV), a unique porcine pestivirus closely related to PhoPeV, exhibits a broad cell tropism, PhoPeV only infects cells from pigs, cattle, sheep, and cats, as has been described for classical swine fever virus (CSFV). Viral titers correlate with the amount of intracellular PhoPeV-specific RNA detected in the tested cell lines. PhoPeV replicates most efficiently in the porcine kidney cell line SK6. Pestiviruses generally counteract the cellular innate immune response by degradation of interferon regulatory factor 3 (IRF3) mediated by the viral N-terminal protease (N). No degradation of IRF3 and an increased expression of the type 1 interferon-stimulated antiviral protein Mx1 was observed in porcine cells infected with PhoPeV whose genome lacks the N encoding region. Infection of a CD46-deficient porcine cell line suggested that CD46, which is implicated in the viral entry of several pestiviruses, is not a major factor for the viral entry of PhoPeV. Moreover, the results of this study confirmed that the cellular factor DNAJC14 plays a crucial role in viral RNA replication of non-cytopathic pestiviruses, including PhoPeV.

摘要

最近发现了首个从港湾鼠海豚中分离出的海洋瘟病毒,即港湾鼠海豚瘟病毒(PhoPeV)。为了进一步表征这种独特的瘟病毒,在不同细胞系中测定了其宿主细胞嗜性和生长动力学。此外,与亲缘关系远近不同的瘟病毒相比,研究了PhoPeV与猪上皮细胞先天免疫的相互作用以及参与PhoPeV病毒进入和RNA复制的特定细胞因子的作用。虽然与PhoPeV密切相关的独特猪瘟病毒邦戈瓦纳瘟病毒(BuPV)表现出广泛的细胞嗜性,但如经典猪瘟病毒(CSFV)所述,PhoPeV仅感染猪、牛、羊和猫的细胞。病毒滴度与测试细胞系中检测到的细胞内PhoPeV特异性RNA量相关。PhoPeV在猪肾细胞系SK6中复制效率最高。瘟病毒通常通过病毒N端蛋白酶(N)介导的干扰素调节因子3(IRF3)降解来对抗细胞先天免疫反应。在感染了基因组缺乏N编码区的PhoPeV的猪细胞中,未观察到IRF3的降解,且1型干扰素刺激的抗病毒蛋白Mx1的表达增加。对缺乏CD46的猪细胞系的感染表明,与几种瘟病毒的病毒进入有关的CD46不是PhoPeV病毒进入的主要因素。此外,本研究结果证实,细胞因子DNAJC14在包括PhoPeV在内的非细胞病变性瘟病毒的病毒RNA复制中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3788/11768717/df18bea484b6/viruses-17-00107-g001.jpg

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