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Evaluation of the impact of ul54 gene-deletion on the global transcription and DNA replication of pseudorabies virus

机译:评估ul54基因缺失对伪狂犬病病毒总体转录和DNA复制的影响

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摘要

Pseudorabies virus (PRV) is an animal alpha-herpesvirus with a wide host range. PRV has 67 protein-coding genes and several non-coding RNA molecules, which can be classified into three temporal groups, immediate early, early and late classes. The ul54 gene of PRV and its homolog icp27 of herpes simplex virus have a multitude of functions, including the regulation of viral DNA synthesis and the control of the gene expression. Therefore, abrogation of PRV ul54 function was expected to exert a significant effect on the global transcriptome and on DNA replication. Real-time PCR and real-time RT-PCR platforms were used to investigate these presumed effects. Our analyses revealed a drastic impact of the ul54 mutation on the genome-wide expression of PRV genes, especially on the transcription of the true late genes. A more than two hour delay was observed in the onset of DNA replication, and the amount of synthesized DNA molecules was significantly decreased in comparison to the wild-type virus. Furthermore, in this work, we were able to successfully demonstrate the utility of long-read SMRT sequencing for genotyping of mutant viruses.
机译:伪狂犬病病毒(PRV)是一种具有广泛宿主范围的动物α-疱疹病毒。 PRV有67个蛋白质编码基因和几个非编码RNA分子,可以将它们分为三个时间组,即早期,早期和晚期。 PRV的ul54基因及其单纯疱疹病毒的同系icp27具有多种功能,包括调节病毒DNA合成和控制基因表达。因此,预期PRV ul54功能的废除将对全局转录组和DNA复制产生显着影响。实时PCR和实时RT-PCR平台用于研究这些推测的影响。我们的分析显示,ul54突变对PRV基因的全基因组表达,特别是对真正的晚期基因的转录,产生了巨大影响。观察到DNA复制的开始有两个多小时的延迟,与野生型病毒相比,合成的DNA分子的数量明显减少。此外,在这项工作中,我们能够成功证明长期阅读SMRT测序在突变病毒基因分型中的效用。

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