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昆虫特异性黄病毒的宿主范围限制发生在病毒生命周期的多个层面。

Host Range Restriction of Insect-Specific Flaviviruses Occurs at Several Levels of the Viral Life Cycle.

作者信息

Junglen Sandra, Korries Marvin, Grasse Wolfgang, Wieseler Janett, Kopp Anne, Hermanns Kyra, León-Juárez Moises, Drosten Christian, Kümmerer Beate Mareike

机构信息

Institute of Virology, University of Bonn Medical Centre, Bonn, Germany.

Robert Koch Institute, Berlin, Germany.

出版信息

mSphere. 2017 Jan 11;2(1). doi: 10.1128/mSphere.00375-16. eCollection 2017 Jan-Feb.

Abstract

The genus contains emerging arthropod-borne viruses (arboviruses) infecting vertebrates, as well as insect-specific viruses (ISVs) (i.e., viruses whose host range is restricted to insects). ISVs are evolutionary precursors to arboviruses. Knowledge of the nature of the ISV infection block in vertebrates could identify functions necessary for the expansion of the host range toward vertebrates. Mapping of host restrictions by complementation of ISV and arbovirus genome functions could generate knowledge critical to predicting arbovirus emergence. Here we isolated a novel flavivirus, termed Niénokoué virus (NIEV), from mosquitoes sampled in Côte d'Ivoire. NIEV groups with insect-specific flaviviruses (ISFs) in phylogeny and grows in insect cells but not in vertebrate cells. We generated an infectious NIEV cDNA clone and a NIEV reporter replicon to study growth restrictions of NIEV in comparison to yellow fever virus (YFV), for which the same tools are available. Efficient RNA replication of the NIEV reporter replicon was observed in insect cells but not in vertebrate cells. Initial translation of the input replicon RNA in vertebrate cells was functional, but RNA replication did not occur. Chimeric YFV carrying the envelope proteins of NIEV was recovered via electroporation in C6/36 insect cells but did not infect vertebrate cells, indicating a block at the level of entry. Since the YF/NIEV chimera readily produced infectious particles in insect cells but not in vertebrate cells despite efficient RNA replication, restriction is also determined at the level of assembly/release. Taking the results together, the ability of ISF to infect vertebrates is blocked at several levels, including attachment/entry and RNA replication as well as assembly/release. Most viruses of the genus , e.g., YFV and dengue virus, are mosquito borne and transmitted to vertebrates during blood feeding of mosquitoes. Within the last decade, an increasing number of viruses with a host range exclusively restricted to insects in close relationship to the vertebrate-pathogenic flaviviruses were discovered in mosquitoes. To identify barriers that could block the arboviral vertebrate tropism, we set out to identify the steps at which the ISF replication cycle fails in vertebrates. Our studies revealed blocks at several levels, suggesting that flavivirus host range expansion from insects to vertebrates was a complex process that involved overcoming multiple barriers.

摘要

该属包含感染脊椎动物的新兴节肢动物传播病毒(虫媒病毒)以及昆虫特异性病毒(ISV)(即宿主范围仅限于昆虫的病毒)。ISV是虫媒病毒的进化前体。了解脊椎动物中ISV感染阻断的本质可以确定宿主范围向脊椎动物扩展所需的功能。通过ISV和虫媒病毒基因组功能互补来绘制宿主限制图谱,可以产生对预测虫媒病毒出现至关重要的知识。在这里,我们从在科特迪瓦采集的蚊子中分离出一种新型黄病毒,称为尼耶武埃病毒(NIEV)。NIEV在系统发育上与昆虫特异性黄病毒(ISF)归为一类,在昆虫细胞中生长,但在脊椎动物细胞中不生长。我们构建了一个感染性NIEV cDNA克隆和一个NIEV报告复制子,以研究与黄热病毒(YFV)相比NIEV的生长限制,对于YFV也有相同的工具可用。在昆虫细胞中观察到NIEV报告复制子的有效RNA复制,但在脊椎动物细胞中未观察到。输入复制子RNA在脊椎动物细胞中的初始翻译是有功能的,但RNA复制未发生。携带NIEV包膜蛋白的嵌合YFV通过电穿孔在C6/36昆虫细胞中得以恢复,但未感染脊椎动物细胞,表明在进入水平存在阻断。由于YF/NIEV嵌合体尽管RNA复制有效,但在昆虫细胞中能轻易产生感染性颗粒,而在脊椎动物细胞中不能,因此在组装/释放水平也存在限制。综合这些结果,ISF感染脊椎动物的能力在多个水平被阻断,包括附着/进入、RNA复制以及组装/释放。该属的大多数病毒,例如YFV和登革病毒,是由蚊子传播的,并在蚊子吸血时传播给脊椎动物。在过去十年中,在蚊子中发现了越来越多与脊椎动物致病性黄病毒密切相关、宿主范围仅局限于昆虫的病毒。为了确定可能阻断虫媒病毒脊椎动物嗜性的障碍,我们着手确定ISF复制周期在脊椎动物中失败的步骤。我们的研究揭示了在多个水平的阻断,这表明黄病毒从昆虫到脊椎动物的宿主范围扩展是一个复杂的过程,涉及克服多个障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31ae/5227070/003b0347d36e/sph0011722230001.jpg

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