Affiliation:
1. Centre Armand-Frappier Santé Biotechnologie, Institut National de la Recherche Scientifique, Laval, QC H7V 1B7, Canada
Abstract
UL24 of herpes simplex virus 1 (HSV-1) has been shown to be a determinant of pathogenesis in mouse models of infection. The N-terminus of UL24 localizes to the nucleus and drives the redistribution of nucleolin and B23. In contrast, when expressed alone, the C-terminal domain of UL24 accumulates in the Golgi apparatus; its importance during infection is unknown. We generated a series of mammalian expression vectors encoding UL24 with nested deletions in the C-terminal domain. Interestingly, enhanced nuclear staining was observed for several UL24-deleted forms in transient transfection assays. The substitution of a threonine phosphorylation site had no effect on UL24 localization or viral titers in cell culture. In contrast, mutations targeting a predicted nuclear export signal (NES) significantly enhanced nuclear localization, indicating that UL24 is able to shuttle between the nucleus and the cytoplasm. Recombinant viruses that encode UL24-harboring substitutions in the NES led to the accumulation of UL24 in the nucleus. Treatment with the CRM-1-specific inhibitor leptomycin B blocked the nuclear export of UL24 in transfected cells but not in the context of infection. Viruses encoding UL24 with NES mutations resulted in a syncytial phenotype, but viral yield was unaffected. These results are consistent with a role for HSV-1 UL24 in late cytoplasmic events in HSV-1 replication.
Funder
Fondation Armand-Frappier
Canadian Institutes of Health Research
Canada Foundation for Innovation
Subject
Virology,Infectious Diseases
Reference62 articles.
1. Human herpes simplex virus infections: Epidemiology, pathogenesis, symptomatology, diagnosis, and management;Fatahzadeh;J. Am. Acad. Dermatol.,2007
2. Molecular phylogeny and evolutionary timescale for the family of mammalian herpesviruses;McGeoch;J. Mol. Biol.,1995
3. Identification, localization, and regulation of expression of the UL24 protein of herpes simplex virus type 1;Pearson;J. Virol.,2002
4. A conserved open reading frame that overlaps the herpes simplex virus thymidine kinase gene is important for viral growth in cell culture;Jacobson;J. Virol.,1989
5. Human herpesvirus 1 UL24 gene encodes a potential PD-(D/E)XK endonuclease;Kinch;J. Virol.,2006