Initial Epstein-Barr virus (EBV) infection occurs via the oropharyngeal mucosa, but mechanisms of EBV entry into epithelial cells are poorly understood. Using polarized oropharyngeal epithelial cells, we showed that EBV enters these cells through two CD21-independent pathways: direct cell-to-cell contact of apical epithelial cell membranes with EBV-infected lymphocytes, and entry of cell-free EBV virions through basolateral membranes. Our data show that interaction between the EBV BMRF-2 glycoprotein and beta1 integrin play a key role in cell-free virion entry. We showed that cell-to-cell spread of progeny versions from infected into uninfected cells occurs across lateral membranes. The amino acid sequence of BMRF-2 reveals several potential basolateral-sorting signals, and we have shown that it is transported to basolateral membranes. We posit that BMRF-2 may be involved in targeting of intracellular progeny virions to the basolateral membrane and may facilitate translocation of virions across lateral intercellular junctions. The goal of this study is to characterize molecular mechanisms of BMRF-2/beta1 integrin interactions and their functional significance in EBV infection and dissemination in single-layer polarized and multi-layer stratified oropharyngeal epithelial cells.
The Specific Aims of the study are: 1) To investigate the role of EBV BMRF- 2 in virion attachment and entry in oropharyngeal epithelial cells; 2) To identify the sorting signals of BMRF-2 that govern its transport to the basolateral membranes of polarized oropharyngeal epithelial cells; and 3) To study the functions of the BMRF-2 protein in EBV cell-to-cell spread in oropharyngeal epithelium. These data will greatly advance knowledge of the mechanisms of EBV infection of oropharyngeal epithelial cells and may be of value to design new approaches to prevention of initial EBV infection.

Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Research Project (R01)
Project #
5R01DE014894-03
Application #
6878555
Study Section
Oral Biology and Medicine Subcommittee 1 (OBM)
Program Officer
Nokta, Mostafa A
Project Start
2003-07-10
Project End
2008-04-30
Budget Start
2005-05-01
Budget End
2006-04-30
Support Year
3
Fiscal Year
2005
Total Cost
$303,000
Indirect Cost
Name
University of California San Francisco
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
094878337
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Tugizov, Sharof M; Herrera, Rossana; Palefsky, Joel M (2013) Epstein-Barr virus transcytosis through polarized oral epithelial cells. J Virol 87:8179-94
Tugizov, Sharof M; Herrera, Rossana; Veluppillai, Piri et al. (2012) Differential transmission of HIV traversing fetal oral/intestinal epithelia and adult oral epithelia. J Virol 86:2556-70
Tugizov, Sharof M; Herrera, Rossana; Veluppillai, Piri et al. (2011) HIV is inactivated after transepithelial migration via adult oral epithelial cells but not fetal epithelial cells. Virology 409:211-22
Xiao, Jianqiao; Palefsky, Joel M; Herrera, Rossana et al. (2009) EBV-positive human sera contain antibodies against the EBV BMRF-2 protein. Virology 393:151-9
Xiao, Jianqiao; Palefsky, Joel M; Herrera, Rossana et al. (2009) EBV BMRF-2 facilitates cell-to-cell spread of virus within polarized oral epithelial cells. Virology 388:335-43
Xiao, Jianqiao; Palefsky, Joel M; Herrera, Rossana et al. (2008) The Epstein-Barr virus BMRF-2 protein facilitates virus attachment to oral epithelial cells. Virology 370:430-42
Tugizov, Sharof; Herrera, Rossana; Veluppillai, Piri et al. (2007) Epstein-Barr virus (EBV)-infected monocytes facilitate dissemination of EBV within the oral mucosal epithelium. J Virol 81:5484-96
Xiao, Jianqiao; Palefsky, Joel M; Herrera, Rossana et al. (2007) Characterization of the Epstein-Barr virus glycoprotein BMRF-2. Virology 359:382-96