We will explore further the possibility that herpes simplex virus (HSV) modulates one or more cellular protein kinase families, either to promote efficient viral gene expression and DNA replication, or to prevent cellular responses that would inhibit efficient virus replication. As obligate intracellular parasites, viruses have profound effects on cellular proliferation, differentiation, and homeostasis. The machinery that regulates these states is often wholly or in part embodied in families of protein kinases and phosphatases that modulate the function of key effector proteins. These effector proteins are often transcription factors which induce gene expression required to sustain a particular phenotype, or to respond to extra-cellular signals, either trophic or stress-inducing. Establishment of primary herpesvirus infections on mucosal epithelium likely requires direct introduction of virus into the cycling cells of the basal cell layer, while reactivation of latent HSV occurs in post-mitotic neurons of dorsal root ganglia. Following anteriograde transport to the periphery, virus re-enters cells of the basal layer where additional rounds of replication results in ulcerative lesion development. In this portion of the Program Project Grant, we seek to extend our previous findings on the effects of HSV on the machinery that regulates cell cycle. Because the HSV replicative cycle occurs within cycling as well as postmitotic cells, we will manipulate the growth state of cell lines of both unlimited and limited life span. Specifically we will address questions about the role of virus infection on the activity of cyclin-dependent kinases (CDKs), the mechanisms of inhibition of CDKs, the viral gene products that contribute to regulation of CDKs, and the importance of regulating CDK activity for efficient virus replication. Armed with this information we can then experimentally address the importance of cell cycle regulation in the process of latency reactivation.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Program Projects (P01)
Project #
2P01CA019014-22A1
Application #
6203029
Study Section
Project Start
1999-09-30
Project End
2000-07-31
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
22
Fiscal Year
1999
Total Cost
Indirect Cost
Name
University of North Carolina Chapel Hill
Department
Type
DUNS #
078861598
City
Chapel Hill
State
NC
Country
United States
Zip Code
27599
Sin, Sang-Hoon; Eason, Anthony B; Bigi, Rachele et al. (2018) Kaposi's Sarcoma-Associated Herpesvirus Latency Locus Renders B Cells Hyperresponsive to Secondary Infections. J Virol 92:
Zhang, Yugen; Dittmer, Dirk P; Mieczkowski, Piotr A et al. (2018) RIG-I Detects Kaposi's Sarcoma-Associated Herpesvirus Transcripts in a RNA Polymerase III-Independent Manner. MBio 9:
Anders, Penny M; Montgomery, Nathan D; Montgomery, Stephanie A et al. (2018) Human herpesvirus-encoded kinase induces B cell lymphomas in vivo. J Clin Invest 128:2519-2534
Ciesielski, Grzegorz L; Nadalutti, Cristina A; Oliveira, Marcos T et al. (2018) Structural rearrangements in the mitochondrial genome of Drosophila melanogaster induced by elevated levels of the replicative DNA helicase. Nucleic Acids Res 46:3034-3046
Gurung, Sunam; Preno, Alisha N; Dubaut, Jamie P et al. (2018) Translational Model of Zika Virus Disease in Baboons. J Virol :
McNamara, Ryan P; Costantini, Lindsey M; Myers, T Alix et al. (2018) Nef Secretion into Extracellular Vesicles or Exosomes Is Conserved across Human and Simian Immunodeficiency Viruses. MBio 9:
DeKroon, Robert M; Gunawardena, Harsha P; Edwards, Rachel et al. (2018) Global Proteomic Changes Induced by the Epstein-Barr Virus Oncoproteins Latent Membrane Protein 1 and 2A. MBio 9:
Nicholls, Thomas J; Nadalutti, Cristina A; Motori, Elisa et al. (2018) Topoisomerase 3? Is Required for Decatenation and Segregation of Human mtDNA. Mol Cell 69:9-23.e6
El-Mallawany, Nader Kim; Kamiyango, William; Villiera, Jimmy et al. (2018) Proposal of a Risk-Stratification Platform to Address Distinct Clinical Features of Pediatric Kaposi Sarcoma in Lilongwe, Malawi. J Glob Oncol :1-7
Selitsky, Sara R; Marron, David; Mose, Lisle E et al. (2018) Epstein-Barr Virus-Positive Cancers Show Altered B-Cell Clonality. mSystems 3:

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