Laboratory of Viral Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892-3210, USA.
J Virol. 2012 Jan;86(1):293-301. doi: 10.1128/JVI.05935-11. Epub 2011 Oct 19.
Poxviruses have an elaborate system for infecting cells comprising several proteins for attachment and a larger number dedicated to membrane fusion and entry. Thus far, 11 proteins have been identified as components of the vaccinia virus (VACV) entry-fusion complex (EFC), and 10 of these proteins have been shown to be required for entry. J5, the remaining functionally uncharacterized component of the complex, is conserved in all poxviruses, has a predicted C-terminal transmembrane domain, and is an N-terminally truncated paralog of two other EFC proteins. To determine the role of J5, we constructed a mutant that inducibly regulates J5 transcription. Although the virus yield was reduced only about 80% without inducer, the inability to isolate a J5 deletion mutant suggested an essential function. To enhance stringency, we employed RNA silencing alone and together with transcriptional repression of the inducible mutant. The yield of infectious virus was reduced 4- to 5-fold by repression, 2-fold by silencing, and 60-fold by the combination of the two. Virus particles made under the latter conditions appeared to contain a full complement of proteins excluding J5 but had very low infectivity. Further studies indicated that after binding to cells, J5-deficient virions had a defect in core entry and an inability to induce syncytium formation. In addition, we confirmed that J5 is associated with the EFC by affinity purification. These data indicate that J5 is a functional component of the EFC and highlights the advantage of combining transcriptional repression and RNA silencing for stringent reduction of gene expression.
痘病毒具有一套复杂的感染细胞系统,其中包括几种用于附着的蛋白和更多专门用于膜融合和进入的蛋白。迄今为止,已经鉴定出 11 种蛋白是痘苗病毒(VACV)进入融合复合物(EFC)的组成部分,其中 10 种蛋白已被证明是进入所必需的。J5 是复合物中剩余的功能尚未确定的成分,在所有痘病毒中都保守,具有预测的 C 端跨膜结构域,并且是另外两种 EFC 蛋白的 N 端截断的旁系同源物。为了确定 J5 的作用,我们构建了一种可诱导调节 J5 转录的突变体。尽管没有诱导剂时病毒产量仅降低约 80%,但无法分离 J5 缺失突变体表明其具有必需的功能。为了增强严格性,我们单独使用 RNA 沉默并与诱导型突变体的转录抑制一起使用。抑制作用使感染性病毒的产量降低了 4-5 倍,沉默作用降低了 2 倍,两者结合降低了 60 倍。在后者条件下产生的病毒颗粒似乎包含除 J5 之外的完整蛋白,但感染力非常低。进一步的研究表明,在与细胞结合后,J5 缺陷型病毒粒子在核心进入中存在缺陷,并且无法诱导合胞体形成。此外,我们通过亲和纯化证实 J5 与 EFC 相关。这些数据表明 J5 是 EFC 的功能性组成部分,并强调了结合转录抑制和 RNA 沉默以严格降低基因表达的优势。