首页> 美国卫生研究院文献>Journal of Virology >The Envelope Protein Encoded by the A33R Gene Is Required for Formation of Actin-Containing Microvilli and Efficient Cell-to-Cell Spread of Vaccinia Virus
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The Envelope Protein Encoded by the A33R Gene Is Required for Formation of Actin-Containing Microvilli and Efficient Cell-to-Cell Spread of Vaccinia Virus

机译:A33R基因编码的信封蛋白是含肌动蛋白的微绒毛的形成和痘苗病毒有效的细胞间传播所必需的

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摘要

The vaccinia virus (VV) A33R gene encodes a highly conserved 23- to 28-kDa glycoprotein that is specifically incorporated into the viral outer envelope. The protein is expressed early and late after infection, consistent with putative early and late promoter sequences. To determine the role of the protein, two inducible A33R mutants were constructed, one with the late promoter and one with the early and late A33R promoter elements. Decreased A33R expression was associated with small plaques that formed comets in liquid medium. Using both an antibiotic resistance gene and a color marker, an A33R deletion mutant, vA33Δ, was isolated, indicating that the A33R gene is not essential for VV replication. The plaques formed by vA33Δ, however, were tiny, indicating that the A33R protein is necessary for efficient cell-to-cell spread. Rescue of the large-plaque phenotype was achieved by inserting a new copy of the A33R gene into the thymidine kinase locus, confirming the specific genetic basis of the phenotype. Although there was a reduction in intracellular virus formed in cells infected with vA33Δ, the amount of infectious virus in the medium was increased. The virus particles in the medium had the buoyant density of extracellular enveloped viruses (EEV). Additionally, amounts of vA33Δ cell-associated extracellular enveloped viruses (CEV) were found to be normal. Immunogold electron microscopy of cells infected with vA33Δ demonstrated the presence of the expected F13L and B5R proteins in wrapping membranes and EEV; however, fully wrapped vA33Δ intracellular enveloped viruses (IEV) were rare compared to partially wrapped particles. Specialized actin tails that propel IEV particles to the periphery and virus-tipped microvilli (both common in wild-type-infected cells) were absent in cells infected with vA33Δ. This is the first deletion mutant in a VV envelope gene that produces at least normal amounts of fully infectious EEV and CEV and yet has a small-plaque phenotype. These data support a new model for VV spread, emphasizing the importance of virus-tipped actin tails.
机译:牛痘病毒(VV)A33R基因编码高度保守的23至28 kDa糖蛋白,该糖蛋白专门掺入病毒外壳中。该蛋白在感染后的早期和晚期表达,与推定的早期和晚期启动子序列一致。为了确定蛋白质的作用,构建了两个诱导型A33R突变体,一个具有晚期启动子,一个具有早期和晚期A33R启动子元件。 A33R表达降低与在液体培养基中形成彗星的小斑块有关。使用抗生素抗性基因和颜色标记,分离了A33R缺失突变体vA33Δ,表明A33R基因对于VV复制不是必需的。然而,由vA33Δ形成的噬菌斑很小,表明A33R蛋白对于有效的细胞间扩散是必需的。通过将新的A33R基因拷贝插入胸苷激酶基因座,可以拯救大菌斑表型,从而确认了该表型的特定遗传基础。尽管在被vA33Δ感染的细胞中形成的细胞内病毒减少了,但是培养基中的传染性病毒数量却增加了。培养基中的病毒颗粒具有细胞外包膜病毒(EEV)的漂浮密度。此外,发现与vA33Δ细胞相关的细胞外包膜病毒(CEV)数量正常。用vA33Δ感染的细胞进行的免疫金电子显微镜检查证明包裹膜和EEV中存在预期的F13L和B5R蛋白。然而,与部分包裹的颗粒相比,完全包裹的vA33Δ细胞内包膜病毒(IEV)很少。在被vA33Δ感染的细胞中,没有能将IEV颗粒推向周围的特化肌动蛋白尾巴和带有病毒的微绒毛(这在野生型感染细胞中很常见)。这是VV包膜基因中的第一个缺失突变体,其产生至少正常量的完全感染性EEV和CEV,但具有小噬斑表型。这些数据支持了VV传播的新模型,强调了带有病毒的肌动蛋白尾巴的重要性。

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