Resch Wolfgang, Moss Bernard
Laboratory of Viral Diseases, National Institutes of Health, 4 Center Dr., MSC 0445, Bethesda, MD 20892, USA.
J Virol. 2005 Dec;79(23):14719-29. doi: 10.1128/JVI.79.23.14719-14729.2005.
We provide the initial characterization of the product of the vaccinia virus L3L open reading frame (VACWR090), which is conserved in all sequenced members of the poxvirus family. The predicted polypeptide contains no motifs or other features that provided a clue to the role of the L3 protein, and no functional information was available regarding a homolog discovered in Plasmodium falciparum. The L3 protein was expressed following viral DNA replication, a finding consistent with a putative late promoter sequence, and was packaged as a non-membrane protein in mature virus particles. A recombinant virus, in which the L3L gene was regulated by the Escherichia coli lac operator/repressor system, had a conditional lethal phenotype. The virus replicated in the presence of inducer, but in its absence, the yields of infectious virus were reduced by 99%. When cells were infected without inducer, however, no defect in gene expression or morphogenesis was noted. Virus particles lacking L3, which assembled in the absence of inducer, were indistinguishable from wild-type virions with regard to morphology, major structural proteins, and DNA content but were noninfectious. L3-deficient virions were able to bind and penetrate cells but produced extremely small amounts of viral early mRNA. A defect in transcription was demonstrated by in vitro studies with permeabilized virions, but soluble extracts of L3-deficient virions showed normal levels of template-dependent transcriptional activity, indicating that only transcription of the packaged genome is impaired.
我们对痘苗病毒L3L开放阅读框(VACWR090)的产物进行了初步表征,该产物在痘病毒科的所有已测序成员中都保守。预测的多肽不包含能为L3蛋白的作用提供线索的基序或其他特征,并且关于在恶性疟原虫中发现的同源物也没有功能信息。L3蛋白在病毒DNA复制后表达,这一发现与推定的晚期启动子序列一致,并且在成熟病毒颗粒中作为非膜蛋白被包装。一种重组病毒,其中L3L基因由大肠杆菌乳糖操纵子/阻遏物系统调控,具有条件致死表型。该病毒在有诱导剂存在时复制,但在没有诱导剂时,感染性病毒的产量降低了99%。然而,当细胞在没有诱导剂的情况下被感染时,未观察到基因表达或形态发生方面的缺陷。在没有诱导剂的情况下组装的缺乏L3的病毒颗粒在形态、主要结构蛋白和DNA含量方面与野生型病毒粒子没有区别,但没有感染性。缺乏L3的病毒粒子能够结合并穿透细胞,但产生的病毒早期mRNA极少。对通透化病毒粒子的体外研究证明了转录存在缺陷,但缺乏L3的病毒粒子的可溶性提取物显示出正常水平的模板依赖性转录活性,这表明只有包装基因组的转录受到损害。