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Temporal Analysis of the Nuclear-to-cytoplasmic Translocation of a Herpes Simplex Virus 1 Protein by Immunofluorescent Confocal Microscopy
Published on: November 4, 2018
Aberrant RNA polymerase initiation and processivity on the genome of a herpes simplex virus 1 mutant lacking ICP27
Claire H Birkenheuer1, Joel D Baines1
1Baker Institute for Animal Health, College of Veterinary Medicine, Cornell University, Ithaca, New York, USA.
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 α 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.
Insights
Herpes simplex virus 1 infected cell protein 27 (ICP27) initially represses viral transcription by inhibiting RNA polymerase II (Pol II) initiation and processivity. Later, ICP27 enhances Pol II processivity on viral genes.
Area of Science:
- Virology
- Molecular Biology
- Gene Regulation
Background:
- Herpes simplex virus 1 (HSV-1) utilizes cellular RNA polymerase II (Pol II) for viral transcription shortly after infection.
- Infected cell protein 27 (ICP27) is crucial for processing viral pre-mRNA and exporting viral mRNA to the cytoplasm.
Purpose of the Study:
- To investigate the role of ICP27 in regulating viral transcription and RNA polymerase II (Pol II) activity during HSV-1 infection using a null mutant.
- To characterize the impact of ICP27 deficiency on Pol II initiation and processivity on the viral genome at different time points post-infection.
Main Methods:
- Precision nuclear run-on followed by deep sequencing (PRO-seq) was employed to analyze viral transcription.
- A processivity index was developed and validated using PRO-seq data to quantify RNA polymerase II (Pol II) processivity.
Main Results:
- ICP27 null mutant HSV-1 showed increased Pol II on the viral genome and accumulation downstream of polyadenylation sites at 1.5 and 3 hours post-infection (hpi), indicating enhanced initiation and processivity.
- At 6 hpi, Pol II accumulation on specific mutant viral genes exceeded that of wild-type virus, suggesting ICP27's role in repressing aberrant transcription early on.
- PRO-seq profiles of the ICP27 mutant resembled, but were not identical to, those induced by the RNA processivity inhibitor flavopiridol, distinguishing ICP27's role from viral DNA replication.
Conclusions:
- ICP27 initially represses aberrant viral transcription by inhibiting Pol II initiation and decreasing RNA processivity at early infection stages (1.5-3 hpi).
- ICP27 is essential for enhancing Pol II processivity on most late viral genes by 6 hpi, through a mechanism distinct from its role in viral DNA replication.
- ICP27 directly or indirectly regulates Pol II activity, including initiation and processivity, on specific viral genes at defined times during infection, beyond its known functions in mRNA processing and export.
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