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Temporal Association of the Herpes Simplex Virus Genome with Histone Proteins During a Lytic Infection

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Journal J Virol
Date 2007 Dec 28
PMID 18160436
Citations 100
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Abstract

Previous work has determined that there are nucleosomes on the herpes simplex virus (HSV) genome during a lytic infection but that they are not arranged in an equally spaced array like in cellular DNA. However, like in cellular DNA, the promoter regions of several viral genes have been shown to be associated with nucleosomes containing modified histone proteins that are generally found associated with actively transcribed genes. Furthermore, it has been found that the association of modified histones with the HSV genome can be detected at the earliest times postinfection (1 h postinfection) and increases up to 3 h postinfection. However from 3 h to 6 h postinfection (the late phase of the replication cycle), the association decreases. In this study we have examined histone association with promoter regions of all kinetic classes of genes. This was done over the time course of an infection in Sy5y cells using sucrose gradient sedimentation, bromodeoxyuridine labeling, chromatin immunoprecipitation assays, Western blot analysis, trypsin and DNase digestion, and quantitative real-time PCR. Because no histones were detected inside HSV type 1 capsids, the viral genome probably starts to associate with histones after being transported from infecting virions into the host nucleus. Promoter regions of all gene classes (immediate early, early, and late) bind with histone proteins at the start of viral gene expression. However, after viral DNA replication initiates, histones appear not to associate with newly synthesized viral genomes.

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References
1.
Huang J, Kent J, Placek B, Whelan K, Hollow C, Zeng P . Trimethylation of histone H3 lysine 4 by Set1 in the lytic infection of human herpes simplex virus 1. J Virol. 2006; 80(12):5740-6. PMC: 1472580. DOI: 10.1128/JVI.00169-06. View

2.
Simpson-Holley M, Colgrove R, Nalepa G, Harper J, Knipe D . Identification and functional evaluation of cellular and viral factors involved in the alteration of nuclear architecture during herpes simplex virus 1 infection. J Virol. 2005; 79(20):12840-51. PMC: 1235858. DOI: 10.1128/JVI.79.20.12840-12851.2005. View

3.
Kubat N, Tran R, McAnany P, Bloom D . Specific histone tail modification and not DNA methylation is a determinant of herpes simplex virus type 1 latent gene expression. J Virol. 2004; 78(3):1139-49. PMC: 321404. DOI: 10.1128/jvi.78.3.1139-1149.2004. View

4.
Homa , Brown . Capsid assembly and DNA packaging in herpes simplex virus. Rev Med Virol. 1997; 7(2):107-122. DOI: 10.1002/(sici)1099-1654(199707)7:2<107::aid-rmv191>3.0.co;2-m. View

5.
Wagner E, Guzowski J, Singh J . Transcription of the herpes simplex virus genome during productive and latent infection. Prog Nucleic Acid Res Mol Biol. 1995; 51:123-65. DOI: 10.1016/s0079-6603(08)60878-8. View