This proposal entails the study of the antigenic requirements for triggering of cytolytic T lymphocytes (CTLs) and the cell interactions that regulate this response. Specifically, this study includes the isolation and characterization of protein antigens from influenza virus, from uninfected murine cells, and from influenza virus-infected murine cells. These proteins will be inserted into phospholipid vesicles (liposomes) and used to define the antigenic requirements for the elicitation of immune responses by murine T lymphocytes in vitro. The responses to be studied are the generation of influenza virus-specific CTLs (i.e., these cells kill virus-infected, major histocompatibility antigen identical cells) and helper T cells (i.e., these cells augment the cytolytic activity of CTLs and may produce helper factors). Cell lines which respond to influenza virus antigens will be established and cloned and their response to purified viral and cell surface antigens will be studied. The cell interactions between different functional subsets of lymphocytes which regulate the CTL response to influenza virus will also be evaluated. Among these cell types are helpers, amplifier cells, suppressor cells, and precursors of cytolytic cells. It is hoped that the understandings which develop from these studies can be applied to the human response to influenza virus, which causes epidemic disease, and later to understanding the immune response to cancer. Once we understand the antigens recognized by CTLs and the cell interactions that regulate this immune response, we may begin to intervene in order to modulate the host's response to viral infections and malignancies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI018083-07
Application #
3127669
Study Section
Experimental Virology Study Section (EVR)
Project Start
1981-08-01
Project End
1989-07-31
Budget Start
1987-08-01
Budget End
1988-07-31
Support Year
7
Fiscal Year
1987
Total Cost
Indirect Cost
Name
Dana-Farber Cancer Institute
Department
Type
DUNS #
149617367
City
Boston
State
MA
Country
United States
Zip Code
02115
Plakhov, I V; Aoki, C; Reiss, C S et al. (1995) Pathogenesis of murine encephalitis limited by defective interfering particles. An immunohistochemical study. J Neurovirol 1:207-18
Huneycutt, B S; Bi, Z; Aoki, C J et al. (1993) Central neuropathogenesis of vesicular stomatitis virus infection of immunodeficient mice. J Virol 67:6698-706
Reiss, C S; Gapud, C P; Keil, W (1992) Newly synthesized class II MHC chains are required for VSV G presentation to CTL clones. Cell Immunol 139:229-38
Browning, M J; Huneycutt, B S; Huang, A S et al. (1991) Replication-defective viruses modulate immune responses. J Immunol 147:2685-91
Forger 3rd, J M; Bronson, R T; Huang, A S et al. (1991) Murine infection by vesicular stomatitis virus: initial characterization of the H-2d system. J Virol 65:4950-8
Pena-Cruz, V; Reiss, C; McIntosh, K (1991) Effect of respiratory syncytial virus infection on mice with protein malnutrition. J Med Virol 33:219-23
Browning, M J; Huang, A S; Reiss, C S (1990) Cytolytic T lymphocytes from the BALB/c-H-2dm2 mouse recognize the vesicular stomatitis virus glycoprotein and are restricted by class II MHC antigens. J Immunol 145:985-94
Browning, M; Reiss, C S; Huang, A S (1990) The soluble viral glycoprotein of vesicular stomatitis virus efficiently sensitizes target cells for lysis by CD4+ T lymphocytes. J Virol 64:3810-6
Pena-Cruz, V; Reiss, C S; McIntosh, K (1989) Sendai virus infection of mice with protein malnutrition. J Virol 63:3541-4