This research proposal is designed to elucidate genetic influences on the susceptibility of animals to experimentally induced autoimmune encephalomyelitis (EAE). Rat EAE is one of the best models for the human illness, multiple sclerosis. In both rats and man, these diseases are mediated by T lymphocytes, which escape from the normal constraints of self-tolerance and respond to a component of the central nervous system called myelin basic protein. In both species, major histocompatibility complex (MHC) genes contribute to the susceptibility of individuals for disease; however, it is known that other background genes also play a significant role. The identity of the background genetic influences is currently the subject of intense investigation. An excellent model in which to study genes (other than MHC loci) that govern CNS autoimmunity is the Lewis/Lewis-resistant (LER) rat combination. The non-susceptible LER rat is virtually co- isogenic with the highly susceptible Lewis rat, yet they share the same (susceptible) MHC haplotype. Our preliminary evidence shows that the T cell receptor beta chain loci are radically different between the two strains, and thus we propose that the T cell receptor gene complex has a major effect on the differential EAE-susceptibility of these two strains. Our studies have the potential to provide a rationale for the poorly understood heritability of multiple sclerosis, and to provide further insight into the mechanism of pathogenesis of this disease.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
1R01NS025519-01
Application #
3410738
Study Section
Immunological Sciences Study Section (IMS)
Project Start
1988-02-01
Project End
1991-01-31
Budget Start
1988-02-01
Budget End
1989-01-31
Support Year
1
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Hahnemann University
Department
Type
Schools of Medicine
DUNS #
City
Philadelphia
State
PA
Country
United States
Zip Code
19129
Blankenhorn, E P; Butterfield, R J; Rigby, R et al. (2000) Genetic analysis of the influence of pertussis toxin on experimental allergic encephalomyelitis susceptibility: an environmental agent can override genetic checkpoints. J Immunol 164:3420-5
Teuscher, C; Butterfield, R J; Ma, R Z et al. (1999) Sequence polymorphisms in the chemokines Scya1 (TCA-3), Scya2 (monocyte chemoattractant protein (MCP)-1), and Scya12 (MCP-5) are candidates for eae7, a locus controlling susceptibility to monophasic remitting/nonrelapsing experimental allergic encephalomy J Immunol 163:2262-6
Bourque, M M; Martin, A M; Desquennes-Clark, L et al. (1996) Possible mechanism for the TCR beta-chain associated EAE resistance of LER rats. J Neurosci Res 45:714-22
Blankenhorn, E P; Stranford, S A; Martin, A M et al. (1995) Cloning of myelin basic protein-reactive T cells from the experimental allergic encephalomyelitis-resistant rat strain, LER. J Neuroimmunol 59:173-83
Livingstone, K D; Sudweeks, J D; Blankenhorn, E P et al. (1995) Susceptibility to actively-induced murine experimental allergic encephalomyelitis is not linked to genes of the T cell receptor or CD3 complexes. Autoimmunity 21:195-201
Wardell, B B; Michael, S D; Tung, K S et al. (1995) Aod1, the immunoregulatory locus controlling abrogation of tolerance in neonatal thymectomy-induced autoimmune ovarian dysgenesis, maps to mouse chromosome 16. Proc Natl Acad Sci U S A 92:4758-62
Sudweeks, J D; Todd, J A; Blankenhorn, E P et al. (1993) Locus controlling Bordetella pertussis-induced histamine sensitization (Bphs), an autoimmune disease-susceptibility gene, maps distal to T-cell receptor beta-chain gene on mouse chromosome 6. Proc Natl Acad Sci U S A 90:3700-4
Fu, Y; Blankenhorn, E P (1992) Nitric oxide-induced anti-mitogenic effects in high and low responder rat strains. J Immunol 148:2217-22
Blankenhorn, E P; Smith, P D; Williams, C B et al. (1992) Alleles of the rat T-cell receptor beta chain gene complex. Immunogenetics 35:324-31
Williams, C B; Blankenhorn, E P; Byrd, K E et al. (1991) Organization and nucleotide sequence of the rat T cell receptor beta-chain complex. J Immunol 146:4406-13

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