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嵌合病毒的昆虫特异性黄病毒棕榈溪结构蛋白的脊椎动物感染黄病毒鉴定障碍复制的昆虫特异性黄病毒在脊椎动物细胞。

Chimeric viruses of the insect-specific flavivirus Palm Creek with structural proteins of vertebrate-infecting flaviviruses identify barriers to replication of insect-specific flaviviruses in vertebrate cells.

机构信息

Australian Infectious Diseases Research Centre, School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia 4072, Queensland, Australia.

出版信息

J Gen Virol. 2019 Nov;100(11):1580-1586. doi: 10.1099/jgv.0.001326.

Abstract

Here we report the generation of novel chimeric flaviviruses, which express the prM and E proteins of either dengue or Zika viruses on the genomic backbone of Palm Creek virus (PCV), an insect-specific flavivirus. The chimeric virus particles were antigenically indistinguishable from their parental prM-E donors, but were unable to infect vertebrate cells. An additional chimera (PCV structural genes in the backbone of West Nile virus - WNV/PCV-prME) was also unable to infect vertebrate cells, but transfection with RNA from this virus resulted in detectable RNA replication and translation but no infectious virion production. These data suggest multiple blocks at the entry, RNA replication and assembly/release stages of insect-specific flavivirus (ISF) infection in vertebrate cells. Serial passaging of these chimeric viruses in mosquito cells identified amino acid substitutions that may lead to increased replication efficiency. These chimeric viruses provide unique tools to further dissect the mechanisms of the host restriction of ISFs.

摘要

在这里,我们报告了新型嵌合黄病毒的产生,这些病毒在 Palm Creek 病毒(PCV)的基因组骨架上表达登革热或寨卡病毒的 prM 和 E 蛋白,PCV 是一种昆虫特异性黄病毒。嵌合病毒粒子在抗原上与亲本 prM-E 供体无法区分,但无法感染脊椎动物细胞。另一种嵌合体(西尼罗河病毒 - WNV/PCV-prME 的骨架中的 PCV 结构基因)也无法感染脊椎动物细胞,但用该病毒的 RNA 转染导致可检测到 RNA 复制和翻译,但没有产生感染性病毒颗粒。这些数据表明,昆虫特异性黄病毒(ISF)在脊椎动物细胞中的进入、RNA 复制和组装/释放阶段存在多种阻断。这些嵌合病毒在蚊子细胞中的连续传代鉴定出可能导致复制效率提高的氨基酸取代。这些嵌合病毒为进一步剖析 ISF 的宿主限制机制提供了独特的工具。

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