Epstein-Barr virus (EBV) is a human herpesvirus that causes infectious mononucleosis. Prospective epidemiologic studies indicate that EBV is causally associated with at least two malignancies - endemic Burkitt's lymphoma, and nasopharyngeal carcinoma. EBV's genome is latent in all these diseases, and is maintained as a nuclear episome that replicates once per cell cycle, and is efficiently partitioned at mitosis. Understanding the mechanism by which EBV episomes are replicated once per cell-cycle and partitioned will ultimately yield therapies against all diseases caused by a latent EBV infection. The long-range goal of these studies is to understand how viral episomes in general, but EBV genomes in specific, are maintained in a functional state with the capacity to cause human disease. The only viral protein that is required for EBV genome maintenance and partitioning is the Epstein-Barr nuclear antigen 1 (EBNA1), which binds a viral cis-element termed oriP through its carboxy-terminal DNA-binding domain. OriP contains two sets of binding sites for EBNA1 - DS, a region that serves as an origin of replication, and FR, a region that serves as an episome maintenance and partitioning element when EBNA1 is bound to it. We have recently discovered that the amino-terminal domain of EBNA1 has two regions within it that are AT-hooks, corresponding to the AT-hooks of cellular proteins such as the prototypic AT-hook protein HMGA1a. Confirming this observation, we have demonstrated that we can functionally replace the N-terminus of EBNA1 with the AT-hooks of HMGA1a. In this proposal we propose to extend our studies in three areas: 1. To characterize the roles of the AT-hook regions of EBNA1 in chromosome tethering and episome maintenance. 2. To utilize a novel replicon and fusion protein to understand the function of EBNA1 in replication. 3. To use viral genetics to determine the functions of EBNA1 in the immortalization of naive B-cells by EBV

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA112564-05
Application #
7473261
Study Section
Experimental Virology Study Section (EVR)
Program Officer
Daschner, Phillip J
Project Start
2005-09-01
Project End
2010-07-31
Budget Start
2008-08-01
Budget End
2010-07-31
Support Year
5
Fiscal Year
2008
Total Cost
$220,812
Indirect Cost
Name
Louisiana State Univ Hsc New Orleans
Department
Microbiology/Immun/Virology
Type
Schools of Dentistry
DUNS #
782627814
City
New Orleans
State
LA
Country
United States
Zip Code
70112
Ibana, Joyce A; Belland, Robert J; Zea, Arnold H et al. (2011) Inhibition of indoleamine 2,3-dioxygenase activity by levo-1-methyl tryptophan blocks gamma interferon-induced Chlamydia trachomatis persistence in human epithelial cells. Infect Immun 79:4425-37
Kelly, Ben L; Singh, Gyanendra; Aiyar, Ashok (2011) Molecular and cellular characterization of an AT-hook protein from Leishmania. PLoS One 6:e21412
Karicherla, Priyanka; Aras, Siddhesh; Aiyar, Ashok et al. (2010) Nona-D-arginine amide suppresses corneal cytokines in Pseudomonas aeruginosa keratitis. Cornea 29:1308-14
Washington, Amber T; Singh, Gyanendra; Aiyar, Ashok (2010) Diametrically opposed effects of hypoxia and oxidative stress on two viral transactivators. Virol J 7:93
Singh, Gyanendra; Aras, Siddhesh; Zea, Arnold H et al. (2009) Optimal transactivation by Epstein-Barr nuclear antigen 1 requires the UR1 and ATH1 domains. J Virol 83:4227-35
Aiyar, Ashok; Aras, Siddhesh; Washington, Amber et al. (2009) Epstein-Barr Nuclear Antigen 1 modulates replication of oriP-plasmids by impeding replication and transcription fork migration through the family of repeats. Virol J 6:29
Aras, Siddhesh; Singh, Gyanendra; Johnston, Kenneth et al. (2009) Zinc coordination is required for and regulates transcription activation by Epstein-Barr nuclear antigen 1. PLoS Pathog 5:e1000469
Norseen, Julie; Thomae, Andreas; Sridharan, Venkatesh et al. (2008) RNA-dependent recruitment of the origin recognition complex. EMBO J 27:3024-35