Hepatocellular injury in hepatitis B virus (HBV) infection is believed to result from the immune-mediated mechanisms related to host clearance of this noncytopathic virus. The objective of this proposal is to examine genetic and molecular mechanisms of immune recognition of HBV antigens, and to characterize the antigen epitope to which the immune response is directed. Recent elucidation of higher molecular weight polypeptides present in the viral envelope has prompted studies focused on the immune response to these pre-S determinants. Specific studies will include: (1) the influence of H-2 and non-H-2-linked genes on the immune response to HBV antigens, including pre-S sequences and nucleocapsid antigens utilizing a series of H-2 congenic and intra-H-2 recombinant murine strains; (2) cellular correlates of in vivo antibody production including evaluation of functional T cell subsets, T cell-B cell interactions, and T and B cell precursor frequencies; (3) chemically synthesized peptide analogs of HBV antigens and proteolytic cleavage fragments will be used to study the nature of the antigenic epitopes recognized by T cell functional subsets and B cells; (4) examination of the mechanism of nonresponsiveness to HBV antigens and strategies to circumvent them; (5) analysis of the human humoral immune response to the recently described pre-S region determinants and, examination of the cellular localization of pre-S antigens by immunofluorescence and immunoelectron microscopy; and (6) application of this basic information towards strategies to design efficacious second generation recombinant and possibly synthetic HBV vaccines. This system has provided, and it is anticipated will continue to provide, critical information applicable to HBV vaccine development, understanding of pathogenetic mechanisms in HBV infection as well as basic information relating to immune recognition of complex protein antigens.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI020720-06
Application #
3130509
Study Section
Immunobiology Study Section (IMB)
Project Start
1984-04-01
Project End
1991-03-31
Budget Start
1989-04-01
Budget End
1991-03-31
Support Year
6
Fiscal Year
1989
Total Cost
Indirect Cost
Name
Scripps Research Institute
Department
Type
DUNS #
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Lee, Byung O; Jones, Joyce E; Peters, Cory J et al. (2011) Identification of a unique double-negative regulatory T-cell population. Immunology 134:434-47
Nystrom, Jessica; Chen, Antony; Frelin, Lars et al. (2010) Improving on the ability of endogenous hepatitis B core antigen to prime cytotoxic T lymphocytes. J Infect Dis 201:1867-79
Ameiss, Keith; Ashraf, Shamaila; Kong, Wei et al. (2010) Delivery of woodchuck hepatitis virus-like particle presented influenza M2e by recombinant attenuated Salmonella displaying a delayed lysis phenotype. Vaccine 28:6704-13
Frelin, Lars; Wahlstrom, Therese; Tucker, Amy E et al. (2009) A mechanism to explain the selection of the hepatitis e antigen-negative mutant during chronic hepatitis B virus infection. J Virol 83:1379-92
Whitacre, David C; Lee, Byung O; Milich, David R (2009) Use of hepadnavirus core proteins as vaccine platforms. Expert Rev Vaccines 8:1565-73
Lee, Byung O; Tucker, Amy; Frelin, Lars et al. (2009) Interaction of the hepatitis B core antigen and the innate immune system. J Immunol 182:6670-81
Billaud, Jean-Noel; Peterson, Darrell; Lee, Byung O et al. (2007) Advantages to the use of rodent hepadnavirus core proteins as vaccine platforms. Vaccine 25:1593-606
Frelin, L; Brenndorfer, E D; Ahlen, G et al. (2006) The hepatitis C virus and immune evasion: non-structural 3/4A transgenic mice are resistant to lethal tumour necrosis factor alpha mediated liver disease. Gut 55:1475-83
Billaud, Jean-Noel; Peterson, Darrell; Barr, Margaret et al. (2005) Combinatorial approach to hepadnavirus-like particle vaccine design. J Virol 79:13656-66
Billaud, Jean-Noel; Peterson, Darrell; Schodel, Florian et al. (2005) Comparative antigenicity and immunogenicity of hepadnavirus core proteins. J Virol 79:13641-55

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