Anti-GBM disease in humans is associated with rapidly progressive glomerulonephritis, anti-a3(IV)NC1 collagen antibodies, and sometimes pulmonary hemorrhage. Anti-GBM disease with kidney and lung involvement is typically referred to as Goodpasture syndrome. Although the primary target for autoantibodies from patients with anti-GBM disease has been identified as the a3(IV)NC1 collagen, its role in the immunopathology of this disease has not been investigated. The long term objective of this proposal is to study the pathogenesis of anti-glomerular basement membrane (GBM) disease in mice immunized with a3 chain of type IV collagen. Initially, as part of specific aim 1, the investigators will continue the characterization of murine anti-GBM disease. Their preliminary experiments show that immunization with a3(IV) collagen produces organ specific inflammatory renal disease mimicking human anti-GBM disease in Goodpasture syndrome in genetically susceptible inbred mice. While all inbred strains of mice immunized with the antigen produced IgG1/Th2-like anti-GBM antibodies that cross react with human Goodpasture autoantibodies, only a select few major histocompatibility complex haplotypes (MHC) developed inflammatory disease in organ tissues. Crescentic glomerulonephritis and lung hemorrhage were restricted to MHC haplotypes H-2 s,b, and d that express additional IL-2 and IgG2a/Th1-like responses which map to the Ab/Aa region of H-2s; immune response genes in HLA-DR/DQ correspond to this region in humans predisposed to Goodpasture syndrome. As the second part of this aim, antibodies and immune cells from mice with anti-GBM disease will be passively and adoptively transferred, respectively, into native recipients. The transfer of disease, will evaluate the contribution of various effector mechanisms. Knockout mice deficient in B cells, T cells and cytokines will also be used to further investigate the contributions of these immune cells and cytokines on disease expression. The molecular determinants of the B-lymphocyte response in mice with nephritis will be examined in specific aim 2. In the first part of the second specific aim we will make a3(IV)NC1 collagen-specific monoclonal antibodies from susceptible and non-susceptible mice. The monoclonal antibodies will be tested in passive transfer experiments for their capacity to induce anti-GBM disease. The disease-inducing and/or non-inducing monoclonals will be further studied to identify the antigen-binding epitopes using synthetic peptides derived from the murine a3(IV)NC1 collagen amino acid sequence. A select panel of monoclonals will be used as immunogens in rabbits and rats to in the hopes of identifying a cross-reactive idiotype. The mouse model described in this proposal closely resembles human anti-GBM disease and Goodpasture syndrome in is immunopathology and in the specificity of its polyclonal autoantibody repertoire. Successful completion of this project should provide new experimental information regarding the processes that govern the pathogenesis of human anti-GBM disease.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK051711-02
Application #
2905918
Study Section
Pathology A Study Section (PTHA)
Program Officer
Hirschman, Gladys H
Project Start
1998-06-01
Project End
2002-05-31
Budget Start
1999-06-01
Budget End
2000-05-31
Support Year
2
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Beth Israel Deaconess Medical Center
Department
Type
DUNS #
076593722
City
Boston
State
MA
Country
United States
Zip Code
02215
Nyberg, Pia; Xie, Liang; Sugimoto, Hikaru et al. (2008) Characterization of the anti-angiogenic properties of arresten, an alpha1beta1 integrin-dependent collagen-derived tumor suppressor. Exp Cell Res 314:3292-305
Zeisberg, Michael; Khurana, Mona; Rao, Velidi H et al. (2006) Stage-specific action of matrix metalloproteinases influences progressive hereditary kidney disease. PLoS Med 3:e100
Charytan, David; MacDonald, Brian; Sugimoto, Hikaru et al. (2005) An unusual case of pulmonary-renal syndrome associated with defects in type IV collagen composition and anti-glomerular basement membrane autoantibodies. Am J Kidney Dis 45:743-8
Reynolds, John; Prodromidi, Evangelia I; Juggapah, Jason K et al. (2005) Nasal administration of recombinant rat alpha3(IV)NC1 prevents the development of experimental autoimmune glomerulonephritis in the WKY rat. J Am Soc Nephrol 16:1350-9
Sugimoto, Hikaru; Hamano, Yuki; Charytan, David et al. (2003) Neutralization of circulating vascular endothelial growth factor (VEGF) by anti-VEGF antibodies and soluble VEGF receptor 1 (sFlt-1) induces proteinuria. J Biol Chem 278:12605-8
Kalluri, R; Zeisberg, M (2003) Exploring the connection between chronic renal fibrosis and bone morphogenic protein-7. Histol Histopathol 18:217-24
Zeisberg, Michael; Bottiglio, Cindy; Kumar, Navin et al. (2003) Bone morphogenic protein-7 inhibits progression of chronic renal fibrosis associated with two genetic mouse models. Am J Physiol Renal Physiol 285:F1060-7
Yang, Changqing; Zeisberg, Michael; Mosterman, Barbara et al. (2003) Liver fibrosis: insights into migration of hepatic stellate cells in response to extracellular matrix and growth factors. Gastroenterology 124:147-59
Zeisberg, Michael; Hanai, Jun-ichi; Sugimoto, Hikaru et al. (2003) BMP-7 counteracts TGF-beta1-induced epithelial-to-mesenchymal transition and reverses chronic renal injury. Nat Med 9:964-8
Sudhakar, Akulapalli; Sugimoto, Hikaru; Yang, Changqing et al. (2003) Human tumstatin and human endostatin exhibit distinct antiangiogenic activities mediated by alpha v beta 3 and alpha 5 beta 1 integrins. Proc Natl Acad Sci U S A 100:4766-71

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