The long-term objective of this proposal is to understand the mechanisms which control the induction and maintenance of self tolerance. Such information might ultimately enable one to manipulate the immune response, e.g. to dampen the anti-host response in autoimmunity or enhance the response in malignancy. The proposal focuses on tolerance to Mlsa determinants, a class of cell surface antigens which is highly immunogenic for T cells. Three broad groups of experiments are proposed. First, information will be sought on the distribution of Mlsa determinants in the thymus, the main site of tolerance induction. Using T hybridoma cells to measure responsiveness, purified populations of various cell types in the thymus will be tested for Mlsa expression. Second, various approaches will be used to study the mechanism of intrathymic tolerance induction to Mlsa determinants vs. H-2 determinants. The broad aim here is to determine which particular cell types control tolerance induction. This question will be addressed with the aid of thymus-grafted mice and bone marrow chimeras, using primary mixed-lymphocyte reactions and antibodies to T cell receptor molecules to assess tolerance. The third group of experiments concerns tolerance induction at the level of mature post-thymic T cells. Detailed information will be sought on a form of T cell anergy which develops in adult mice after injection of Mlsa-positive lymphoid cells.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
7R01CA041993-06
Application #
3182659
Study Section
Immunobiology Study Section (IMB)
Project Start
1985-07-01
Project End
1993-03-31
Budget Start
1992-04-01
Budget End
1993-03-31
Support Year
6
Fiscal Year
1992
Total Cost
Indirect Cost
Name
Scripps Research Institute
Department
Type
DUNS #
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Camacho, S A; Heath, W R; Carbone, F R et al. (2001) A key role for ICAM-1 in generating effector cells mediating inflammatory responses. Nat Immunol 2:523-9
Ragazzo, J L; Ozaki, M E; Karlsson, L et al. (2001) Costimulation via lymphocyte function-associated antigen 1 in the absence of CD28 ligation promotes anergy of naive CD4+ T cells. Proc Natl Acad Sci U S A 98:241-6
Ozaki, M E; Webb, S R (2000) Controlling mature CD4+ T cell responses. Immunol Res 21:345-55
Luksch, C R; Winqvist, O; Ozaki, M E et al. (1999) Intercellular adhesion molecule-1 inhibits interleukin 4 production by naive T cells. Proc Natl Acad Sci U S A 96:3023-8
Ozaki, M E; Coren, B A; Huynh, T N et al. (1999) CD4+ T cell responses to CD40-deficient APCs: defects in proliferation and negative selection apply only with B cells as APCs. J Immunol 163:5250-6
Ozaki, M E; Karlsson, L; Peterson, P A et al. (1997) Antigen specificity of dual reactive T hybridomas determines the requirement for CD40 ligand-CD40 interactions. J Immunol 159:214-21
Hartwig, U F; Karlsson, L; Peterson, P A et al. (1997) CD40 and IL-4 regulate murine CD27L expression. J Immunol 159:6000-8
O'Rourke, A M; Webb, S R (1997) Cross talk between T and B cells generates B antigen-presenting cells able to induce inositol phosphate production in T cells responding to Mls(a) superantigens. Eur J Immunol 27:3253-8
Hayden, K A; Tough, D F; Webb, S R (1996) In vivo response of mature T cells to Mlsa antigens. Long-term progeny of dividing cells include cells with a naive phenotype. J Immunol 156:48-55
Sprent, J; Webb, S R (1995) Intrathymic and extrathymic clonal deletion of T cells. Curr Opin Immunol 7:196-205

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