The ribosomal P protein antigens are perhaps the only specific protein antigens in human and murine SLE about which the structure, function, epitopes, and amino acid sequences are known. Using the P/anti-P antigen/antibody systems, the following questions will be addressed: a) Are the P protein antigens in patients' cells normal? The primary sequence of the P proteins will be analyzed by recombinant DNA techniques and possible environmental alterations studied by two-dimensional gel electrophoresis. The effect of phosphorylation of the major epitope on autoantibody binding will be measured. b) Can unmodified P proteins stimulate and drive anti-P production in MRL/lpr and BALB/c mice? Mice will be immunized with mouse whole ribosomes and the antibody response to all ribosomal proteins analyzed by immunoblotting and anti-P levels assayed by ELISA. c) Are T cells involved in antibody production and can a T cell antigen be defined? In vitro proliferation and expression of activation antigens (Tac, Ia, MRL3) will be studied in peripheral T cells after exposure to P proteins and several possible manipulations (IL-2 supplementation, removal of T suppressor cells). Since only 15% of MRL mice produce anti-P, the role of T cells in vivo can be tested by adoptive transfer of T and B cells in anti-P positive and negative mice. d) Can anti-P antibodies be specifically suppressed in MRL mice? MRL mice will be injected with either peptide-IgG2a conjugates or P protein-polyethylene glycol conjugates at the age of 3 months and anti-P antibodies serially measured by the ELISA. e) How diverse are anti-P and anti-Sm antibodies at the genetic level and are they derived from a unique """"""""autoimmune"""""""" subset of B cells? Monoclonal antibodies will be made from the spleens of MRL mice positive for both anti- Sm and anti-P, RNA will be isolated and sequenced. To develop safe forms of immunotherapy, it is important to understand whether autoantibody production is antigen-driven and if so, why? ((a) and (b) above). If autoantibodies are driven by antigen, then suppressive therapy ((d) above) is likely to work. If T cells are involved ((c) above), then anti-clonotypic therapy can be used. The tools are available for exploring the diversity of autoantibody production at the genetic level ((e above). Defining the genes involved in autoantibodies against the P and Sm antigens may lead to fundamental insights regarding B cell subsets involved in autoimmunity.

Agency
National Institute of Health (NIH)
Institute
National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS)
Type
Research Project (R01)
Project #
1R01AR038915-01A1
Application #
3158949
Study Section
General Medicine A Subcommittee 2 (GMA)
Project Start
1988-07-01
Project End
1993-06-30
Budget Start
1988-07-01
Budget End
1989-06-30
Support Year
1
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Hospital for Special Surgery
Department
Type
DUNS #
City
New York
State
NY
Country
United States
Zip Code
10021
Mevorach, D; Mascarenhas, J O; Gershov, D et al. (1998) Complement-dependent clearance of apoptotic cells by human macrophages. J Exp Med 188:2313-20
Shustov, A; Nguyen, P; Finkelman, F et al. (1998) Differential expression of Fas and Fas ligand in acute and chronic graft-versus-host disease: up-regulation of Fas and Fas ligand requires CD8+ T cell activation and IFN-gamma production. J Immunol 161:2848-55
Georgescu, L; Vakkalanka, R K; Elkon, K B et al. (1997) Interleukin-10 promotes activation-induced cell death of SLE lymphocytes mediated by Fas ligand. J Clin Invest 100:2622-33
Arnett, F C; Reveille, J D; Moutsopoulos, H M et al. (1996) Ribosomal P autoantibodies in systemic lupus erythematosus. Frequencies in different ethnic groups and clinical and immunogenetic associations. Arthritis Rheum 39:1833-9
Via, C S; Nguyen, P; Shustov, A et al. (1996) A major role for the Fas pathway in acute graft-versus-host disease. J Immunol 157:5387-93
Silverman, E D; Buyon, J; Laxer, R M et al. (1995) Autoantibody response to the Ro/La particle may predict outcome in neonatal lupus erythematosus. Clin Exp Immunol 100:499-505
Ashany, D; Elkon, K B; Migliaccio, G et al. (1995) Functional characterization of lymphoid cells generated in serum-deprived culture stimulated with stem cell factor and interleukin 7 from normal and autoimmune mice. J Cell Physiol 164:562-70
Ashany, D; Song, X; Lacy, E et al. (1995) Th1 CD4+ lymphocytes delete activated macrophages through the Fas/APO-1 antigen pathway. Proc Natl Acad Sci U S A 92:11225-9
Crow, M K; DelGiudice-Asch, G; Zehetbauer, J B et al. (1994) Autoantigen-specific T cell proliferation induced by the ribosomal P2 protein in patients with systemic lupus erythematosus. J Clin Invest 94:345-52
Hasler, P; Brot, N; Weissbach, H et al. (1994) The effect of phosphorylation and site-specific mutations in the immunodominant epitope of the human ribosomal P proteins. Clin Immunol Immunopathol 72:273-9

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