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African Swine Fever Virus Protein pE199L Mediates Virus Entry by Enabling Membrane Fusion and Core Penetration

机译:非洲猪瘟病毒蛋白PE199L通过使膜融合和核心渗透来介导病毒进入

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African swine fever virus (ASFV) is a complex nucleocytoplasmic large DNA virus (NCLDV) causing a lethal hemorrhagic disease that currently threatens the global pig industry. Despite its relevance in the infectious cycle, very little is known about the internalization of ASFV in the host cell. Here, we report the characterization of ASFV protein pE199L, a cysteine-rich structural polypeptide with similarity to proteins A16, G9, and J5 of the entry fusion complex (EFC) of poxviruses. Using biochemical and immunomicroscopic approaches, we found that, like the corresponding poxviral proteins, pE199L localizes to the inner viral envelope and behaves as an integral transmembrane polypeptide with cytosolic intramolecular disulfide bonds. Using an ASFV recombinant that inducibly expresses the E199L gene, we found that protein pE199L is not required for virus assembly and egress or for virus-cell binding and endocytosis but is required for membrane fusion and core penetration. Interestingly, similar results have been previously reported for ASFV protein pE248R, an inner membrane virion component related to the poxviral L1 and F9 EFC proteins. Taken together, these findings indicate that ASFV entry relies on a form of fusion machinery comprising proteins pE248R and pE199L that displays some similarities to the unconventional fusion apparatus of poxviruses. Also, these results provide novel targets for the development of strategies that block the first stages of ASFV replication.
机译:非洲猪瘟病毒(ASFV)是一种复杂的核细胞质大DNA病毒(NCLDV),导致目前威胁到全球猪工业的致命出血疾病。尽管其在传染性周期中有关,但迄今为止宿主细胞中ASFV的内化很少。在这里,我们报告了ASFV蛋白PE199L的表征,一种富含半胱氨酸的结构多肽,其具有与痘病毒进入融合复合物(EFC)的蛋白质A16,G9和J5的相似性。使用生化和免疫诊断方法,我们发现,与相应的PoxViral蛋白一样,PE199L定位于内部病毒封套,并表现为具有细胞源分子内二硫键的整体跨膜多肽。使用诱导诱导E199L基因的ASFV重组剂,我们发现病毒组件和出口不需要蛋白质PE199L,或用于病毒细胞结合和内吞作用,但是膜融合和核心渗透所需的蛋白质。有趣的是,先前已经报道了与痘病毒L1和F9 EFC蛋白相关的内膜病毒素组分的类似结果。这些发现表明,ASFV进入依赖于包含蛋白质PE248R和PE199L的融合机械的形式,其显示与痘病毒的非传统融合装置的一些相似之处。此外,这些结果为开发策略提供了阻止ASFV复制第一阶段的策略的新颖目标。

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