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Human Cytomegalovirus PUL79 is an Elongation Factor of RNA Polymerase II for Viral Gene Transcription

Overview
Journal PLoS Pathog
Specialty Microbiology
Date 2014 Aug 29
PMID 25166009
Citations 27
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Abstract

In this study, we have identified a unique mechanism in which human cytomegalovirus (HCMV) protein pUL79 acts as an elongation factor to direct cellular RNA polymerase II for viral transcription during late times of infection. We and others previously reported that pUL79 and its homologues are required for viral transcript accumulation after viral DNA synthesis. We hypothesized that pUL79 represented a unique mechanism to regulate viral transcription at late times during HCMV infection. To test this hypothesis, we analyzed the proteome associated with pUL79 during virus infection by mass spectrometry. We identified both cellular transcriptional factors, including multiple RNA polymerase II (RNAP II) subunits, and novel viral transactivators, including pUL87 and pUL95, as protein binding partners of pUL79. Co-immunoprecipitation (co-IP) followed by immunoblot analysis confirmed the pUL79-RNAP II interaction, and this interaction was independent of any other viral proteins. Using a recombinant HCMV virus where pUL79 protein is conditionally regulated by a protein destabilization domain ddFKBP, we showed that this interaction did not alter the total levels of RNAP II or its recruitment to viral late promoters. Furthermore, pUL79 did not alter the phosphorylation profiles of the RNAP II C-terminal domain, which was critical for transcriptional regulation. Rather, a nuclear run-on assay indicated that, in the absence of pUL79, RNAP II failed to elongate and stalled on the viral DNA. pUL79-dependent RNAP II elongation was required for transcription from all three kinetic classes of viral genes (i.e. immediate-early, early, and late) at late times during virus infection. In contrast, host gene transcription during HCMV infection was independent of pUL79. In summary, we have identified a novel viral mechanism by which pUL79, and potentially other viral factors, regulates the rate of RNAP II transcription machinery on viral transcription during late stages of HCMV infection.

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References
1.
Nitzsche A, Paulus C, Nevels M . Temporal dynamics of cytomegalovirus chromatin assembly in productively infected human cells. J Virol. 2008; 82(22):11167-80. PMC: 2573275. DOI: 10.1128/JVI.01218-08. View

2.
Terhune S, Torigoi E, Moorman N, Silva M, Qian Z, Shenk T . Human cytomegalovirus UL38 protein blocks apoptosis. J Virol. 2007; 81(7):3109-23. PMC: 1866066. DOI: 10.1128/JVI.02124-06. View

3.
Baryawno N, Rahbar A, Wolmer-Solberg N, Taher C, Odeberg J, Darabi A . Detection of human cytomegalovirus in medulloblastomas reveals a potential therapeutic target. J Clin Invest. 2011; 121(10):4043-55. PMC: 3195466. DOI: 10.1172/JCI57147. View

4.
Johnson P, Everett R . The control of herpes simplex virus type-1 late gene transcription: a 'TATA-box'/cap site region is sufficient for fully efficient regulated activity. Nucleic Acids Res. 1986; 14(21):8247-64. PMC: 311857. DOI: 10.1093/nar/14.21.8247. View

5.
Maiuri P, Knezevich A, de Marco A, Mazza D, Kula A, McNally J . Fast transcription rates of RNA polymerase II in human cells. EMBO Rep. 2011; 12(12):1280-5. PMC: 3245692. DOI: 10.1038/embor.2011.196. View