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单纯疱疹病毒1型缺乏ICP27的突变体基因组上异常的RNA聚合酶起始和持续性

Aberrant RNA polymerase initiation and processivity on the genome of a herpes simplex virus 1 mutant lacking ICP27.

作者信息

Birkenheuer Claire H, Baines Joel D

机构信息

Baker Institute for Animal Health, College of Veterinary Medicine, Cornell University, Ithaca, New York, USA.

出版信息

J Virol. 2024 Jun 13;98(6):e0071224. doi: 10.1128/jvi.00712-24. Epub 2024 May 23.

Abstract

Within the first 15 minutes of infection, herpes simplex virus 1 immediate early proteins repurpose cellular RNA polymerase (Pol II) for viral transcription. An important role of the viral-infected cell protein 27 (ICP27) is to facilitate viral pre-mRNA processing and export viral mRNA to the cytoplasm. Here, we use precision nuclear run-on followed by deep sequencing (PRO-seq) to characterize transcription of a viral ICP27 null mutant. At 1.5 and 3 hours post infection (hpi), we observed increased total levels of Pol II on the mutant viral genome and accumulation of Pol II downstream of poly A sites indicating increased levels of initiation and processivity. By 6 hpi, Pol II accumulation on specific mutant viral genes was higher than that on wild-type virus either at or upstream of poly A signals, depending on the gene. The PRO-seq profile of the ICP27 mutant on late genes at 6 hpi was similar but not identical to that caused by treatment with flavopiridol, a known inhibitor of RNA processivity. This pattern was different from PRO-seq profiles of other gene mutants and upon inhibition of viral DNA replication with PAA. Together, these results indicate that ICP27 contributes to the repression of aberrant viral transcription at 1.5 and 3 hpi by inhibiting initiation and decreasing RNA processivity. However, ICP27 is needed to enhance processivity on most late genes by 6 hpi in a mechanism distinguishable from its role in viral DNA replication.IMPORTANCEWe developed and validated the use of a processivity index for precision nuclear run-on followed by deep sequencing data. The processivity index calculations confirm infected cell protein 27 (ICP27) induces downstream of transcription termination on certain host genes. The processivity indices and whole gene probe data implicate ICP27 in transient immediate early gene-mediated repression, a process that also requires ICP4, ICP22, and ICP0. The data indicate that ICP27 directly or indirectly regulates RNA polymerase (Pol II) initiation and processivity on specific genes at specific times post infection. These observations support specific and varied roles for ICP27 in regulating Pol II activity on viral genes in addition to its known roles in post transcriptional mRNA processing and export.

摘要

在感染的最初15分钟内,单纯疱疹病毒1型立即早期蛋白将细胞RNA聚合酶(Pol II)重新用于病毒转录。病毒感染细胞蛋白27(ICP27)的一个重要作用是促进病毒前体mRNA加工并将病毒mRNA输出到细胞质。在此,我们使用精确核运行分析结合深度测序(PRO-seq)来表征病毒ICP27缺失突变体的转录情况。在感染后1.5小时和3小时(hpi),我们观察到突变病毒基因组上Pol II的总水平增加,并且在多聚腺苷酸位点下游Pol II积累,表明起始水平和持续合成能力增加。到6 hpi时,根据基因不同,特定突变病毒基因上的Pol II积累在多聚腺苷酸信号处或上游高于野生型病毒。6 hpi时ICP27突变体晚期基因的PRO-seq图谱与已知的RNA持续合成能力抑制剂黄酮哌酯处理所导致的图谱相似但不完全相同。这种模式与其他基因突变体的PRO-seq图谱以及用磷乙酸(PAA)抑制病毒DNA复制后的图谱不同。总之,这些结果表明,ICP27通过抑制起始和降低RNA持续合成能力,在1.5和3 hpi时有助于抑制异常病毒转录。然而,到6 hpi时,ICP27是通过一种与其在病毒DNA复制中的作用不同的机制来增强大多数晚期基因的持续合成能力。

重要性

我们开发并验证了一种用于精确核运行分析结合深度测序数据的持续合成能力指数。持续合成能力指数计算证实,感染细胞蛋白27(ICP27)在某些宿主基因的转录终止下游起作用。持续合成能力指数和全基因探针数据表明,ICP27参与瞬时立即早期基因介导的抑制作用,这一过程也需要ICP4、ICP22和ICP0。数据表明,ICP27在感染后特定时间直接或间接调节特定基因上的RNA聚合酶(Pol II)起始和持续合成能力。这些观察结果支持了ICP27除了在转录后mRNA加工和输出中的已知作用外,在调节病毒基因上的Pol II活性方面具有特定且多样的作用。

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