Multiple sclerosis (MS) is a common inflammatory demyelinating disease of the central nervous system characterized by local infiltration of T cells and macrophages into the white matter. The etiology of MS remains unknown, but both genetic and environmental factors are important in the development of disease. Susceptibility to MS has been linked to certain MHC class II alleles, although analysis of their exact function remains complicated. In this proposal, we will investigate the contribution of different human MHC class II molecules in the pathogenesis of MS. To test this, e have generated transgenic mice expressing several HLA-DR and -DQ genes in mice where the endogenous class II genes have been knocked out. In addition, to further humanize our transgenic mice, we have replaced the mouse CD4 with human CD4 gene. Our objectives are: 1) To generate experimental models of MS via induction of experimental allergic encephalomyelitis (EAE) in the transgenic lines. This analysis will shed light into the role of HLA class II molecules in susceptibility/resistance of disease. 2) To analyze the role of HLA class II molecules in cytokine expression and T cell selection. 3) To examine processing and presentation of T cell epitopes derived from CNS autoantigens, restricted by the HLA class II molecules. The development of HLA class II restricted experimental models will aid towards understanding the exact role of HLA class II molecules in MS pathogenesis and in the formulation of immunotherapeutic interventions.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Program Projects (P01)
Project #
1P01NS038468-01A2
Application #
6359227
Study Section
National Institute of Neurological Disorders and Stroke Initial Review Group (NSD)
Project Start
2000-09-01
Project End
2005-08-31
Budget Start
Budget End
Support Year
1
Fiscal Year
2000
Total Cost
$195,164
Indirect Cost
Name
Mayo Clinic, Rochester
Department
Type
DUNS #
City
Rochester
State
MN
Country
United States
Zip Code
55905
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Pavelko, Kevin D; Mendez-Fernandez, Yanice; Bell, Michael P et al. (2012) Nonequivalence of classical MHC class I loci in ability to direct effective antiviral immunity. PLoS Pathog 8:e1002541
Mangalam, Ashutosh K; Luckey, David; Giri, Shailendra et al. (2012) Two discreet subsets of CD8 T cells modulate PLP(91-110) induced experimental autoimmune encephalomyelitis in HLA-DR3 transgenic mice. J Autoimmun 38:344-53
Kerkvliet, Jason; Edukulla, Ramakrishna; Rodriguez, Moses (2010) Novel roles of the picornaviral 3D polymerase in viral pathogenesis. Adv Virol 2010:368068
Warrington, Arthur E; Rodriguez, Moses (2010) Method of identifying natural antibodies for remyelination. J Clin Immunol 30 Suppl 1:S50-5
Deb, Chandra; Lafrance-Corey, Reghann G; Zoecklein, Laurie et al. (2009) Demyelinated axons and motor function are protected by genetic deletion of perforin in a mouse model of multiple sclerosis. J Neuropathol Exp Neurol 68:1037-48
Rodriguez, Moses; Warrington, Arthur E; Pease, Larry R (2009) Invited Article: Human natural autoantibodies in the treatment of neurologic disease. Neurology 72:1269-76
Rodriguez, Moses; Zoecklein, Laurie; Papke, Louisa et al. (2009) Tumor necrosis factor alpha is reparative via TNFR2 [corrected] in the hippocampus and via TNFR1 [corrected] in the striatum after virus-induced encephalitis. Brain Pathol 19:12-26
Wright, Brent R; Warrington, Arthur E; Edberg, Dale D et al. (2009) Cellular mechanisms of central nervous system repair by natural autoreactive monoclonal antibodies. Arch Neurol 66:1456-9
Rodriguez, Moses; Zoecklein, Laurie; Kerkvliet, Jason G et al. (2008) Human HLA-DR transgenes protect mice from fatal virus-induced encephalomyelitis and chronic demyelination. J Virol 82:3369-80

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