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首页> 外文期刊>BMC Molecular Biology >The ICP22 protein selectively modifies the transcription of different kinetic classes of pseudorabies virus genes
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The ICP22 protein selectively modifies the transcription of different kinetic classes of pseudorabies virus genes

机译:ICP22蛋白选择性修饰伪狂犬病病毒基因不同动力学类别的转录

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Pseudorabies virus (PRV), an alpha-herpesvirus of swine, is a widely used model organism in investigations of the molecular pathomechanisms of the herpesviruses. This work is the continuation of our earlier studies, in which we investigated the effect of the abrogation of gene function on the viral transcriptome by knocking out PRV genes playing roles in the coordination of global gene expression of the virus. In this study, we deleted the us1 gene encoding the ICP22, an important viral regulatory protein, and analyzed the changes in the expression of other PRV genes. A multi-timepoint real-time RT-PCR technique was applied to evaluate the impact of deletion of the PRV us1 gene on the overall transcription kinetics of viral genes. The mutation proved to exert a differential effect on the distinct kinetic classes of PRV genes at the various stages of lytic infection. In the us1 gene-deleted virus, all the kinetic classes of the genes were significantly down-regulated in the first hour of infection. After 2 to 6 h of infection, the late genes were severely suppressed, whereas the early genes were unaffected. In the late stage of infection, the early genes were selectively up-regulated. In the mutant virus, the transcription of the ie180 gene, the major coordinator of PRV gene expression, correlated closely with the transcription of other viral genes, a situation which was not found in the wild-type (wt) virus. A 4-h delay was observed in the commencement of DNA replication in the mutant virus as compared with the wt virus. The rate of transcription from a gene normalized to the relative copy number of the viral genome was observed to decline drastically following the initiation of DNA replication in both the wt and mutant backgrounds. Finally, the switch between the expressions of the early and late genes was demonstrated not to be controlled by DNA replication, as is widely believed, since the switch preceded the DNA replication. Our results show a strong dependence of PRV gene expression on the presence of functional us1 gene. ICP22 is shown to exert a differential effect on the distinct kinetic classes of PRV genes and to disrupt the close correlation between the transcription kinetics of ie180 and other PRV transcripts. Furthermore, DNA replication exerts a severe constraint on the viral transcription.
机译:伪狂犬病病毒(PRV)是猪的一种α-疱疹病毒,是在研究疱疹病毒分子致病机理中广泛使用的模型生物。这项工作是我们先前研究的延续,其中我们通过敲除在病毒总体基因表达的协调中发挥作用的PRV基因,研究了基因功能废除对病毒转录组的影响。在这项研究中,我们删除了编码重要病毒调节蛋白ICP22的us1基因,并分析了其他PRV基因表达的变化。应用多时间点实时RT-PCR技术评估PRV us1基因缺失对病毒基因总体转录动力学的影响。事实证明,该突变在溶菌感染的各个阶段对PRV基因的不同动力学类别产生了不同的影响。在us1基因缺失的病毒中,基因的所有动力学类别在感染的第一小时内均显着下调。感染2至6小时后,晚期基因被严重抑制,而早期基因未受影响。在感染的后期,早期基因被选择性上调。在突变病毒中,PRV基因表达的主要协调者ie180基因的转录与其他病毒基因的转录密切相关,这种情况在野生型(wt)病毒中没有发现。与野生型病毒相比,突变病毒中DNA复制的开始时间延迟了4小时。在wt和突变体背景下,随着DNA复制的开始,观察到从标准化为病毒基因组相对拷贝数的基因转录的速率急剧下降。最后,正如人们普遍认为的那样,证明了早期和晚期基因表达之间的转换不受DNA复制的控制,因为该转换先于DNA复制。我们的结果表明PRV基因表达强烈依赖于功能性us1基因的存在。已显示ICP22对PRV基因的不同动力学类别产生差异作用,并破坏ie180和其他PRV转录本的转录动力学之间的密切相关性。此外,DNA复制对病毒转录产生了严重的限制。

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