Superantigens (SAgs) for B lymphocytes interact via conserved V region framework sites in the B cell antigen receptor (BCR) to target large sets of lymphocytes. We have previously elucidated central structural and immunobiologic properties of protein A of Staphylococcus aureus (SpA), and established SpA as the prototypic experimental B-cell superantigen. Based on an understanding of the molecular basis by which naturally pentameric SpA binds B-cells, we have recently developed the murine T15i Ig """"""""knockin"""""""" system for investigations of the in vivo outcome of SpA exposure. In these mice, most B cells express a VH transgene product that is targeted by SpA, and we have shown that SpA treatments rapidly induce activation-associated apoptotic death of targeted B cells. In the current research program, we will use different forms of SpA to elucidate key mechanisms responsible for BCR-mediated determinations of lymphocyte clonal fate.
The Specific Aims will include:
AIM 1 : To define the nature of the SAg-induced BCR complex responsible for B lymphocyte activation and apoptosis.
AIM 2 : To determine how membrane co-receptors may affect clonal fate after interactions with SpA.
AIM 3 : To investigate how Bcl-2 family members may be involved in determining B-cell clonalfate after interactions with SpA.
AIM 4 : To evaluate how co-exposure to other immunologically active components of S. aureus can affect the outcome of in vivo SpA exposure. These investigations will provide important insights into the fundamental properties of B-cells. In addition, these studies will lead to a better understanding of the immunobiologic activities of a virulence factor from one of the most important causes of life-threatening infection in the US.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
2R01AI040305-06A1
Application #
6778952
Study Section
Immunobiology Study Section (IMB)
Program Officer
Mallia, Conrad M
Project Start
1998-05-01
Project End
2009-01-31
Budget Start
2004-02-15
Budget End
2005-01-31
Support Year
6
Fiscal Year
2004
Total Cost
$339,036
Indirect Cost
Name
University of California San Diego
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
804355790
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Pelzek, Adam J; Grönwall, Caroline; Rosenthal, Pamela et al. (2017) Persistence of Disease-Associated Anti-Citrullinated Protein Antibody-Expressing Memory B Cells in Rheumatoid Arthritis in Clinical Remission. Arthritis Rheumatol 69:1176-1186
Frost, Simon D W; Murrell, Ben; Hossain, A S Md Mukarram et al. (2015) Assigning and visualizing germline genes in antibody repertoires. Philos Trans R Soc Lond B Biol Sci 370:
Grönwall, Caroline; Kosakovsky Pond, Sergei L; Young, Jason A et al. (2012) In vivo VL-targeted microbial superantigen induced global shifts in the B cell repertoire. J Immunol 189:850-9
Bartok, Beatrix; Silverman, Gregg J (2011) Development of anti-CD20 therapy for multiple sclerosis. Exp Cell Res 317:1312-8
MacLellan, Lindsay M; Montgomery, Jennifer; Sugiyama, Fujimi et al. (2011) Co-opting endogenous immunoglobulin for the regulation of inflammation and osteoclastogenesis in humans and mice. Arthritis Rheum 63:3897-907
Becker-Herman, Shirly; Meyer-Bahlburg, Almut; Schwartz, Marc A et al. (2011) WASp-deficient B cells play a critical, cell-intrinsic role in triggering autoimmunity. J Exp Med 208:2033-42
Chen, Yifang; Khanna, Sahil; Goodyear, Carl S et al. (2009) Regulation of dendritic cells and macrophages by an anti-apoptotic cell natural antibody that suppresses TLR responses and inhibits inflammatory arthritis. J Immunol 183:1346-59
Chen, Yifang; Park, Yong-Beom; Patel, Ekta et al. (2009) IgM antibodies to apoptosis-associated determinants recruit C1q and enhance dendritic cell phagocytosis of apoptotic cells. J Immunol 182:6031-43
Silverman, G J; Srikrishnan, R; Germar, K et al. (2008) Genetic imprinting of autoantibody repertoires in systemic lupus erythematosus patients. Clin Exp Immunol 153:102-16
Silverman, Gregg J; Boyle, David L (2008) Understanding the mechanistic basis in rheumatoid arthritis for clinical response to anti-CD20 therapy: the B-cell roadblock hypothesis. Immunol Rev 223:175-85

Showing the most recent 10 out of 38 publications