Affiliation:
1. *Beijer Laboratory, Department of Genetics and Pathology, Unit of Medical Genetics, Biomedical Center, Uppsala University, Uppsala, Sweden; and
2. †Section for Medical Inflammation Research, Sölvegaton 19, Lund University, Lund, Sweden
Abstract
Abstract
The susceptibility to collagen-induced arthritis in the highly susceptible DBA/1 mouse has earlier been shown to be partly controlled by the MHC class II gene Aq. To identify susceptibility loci outside of MHC, we have made crosses between DBA/1 and the less susceptible B10.Q strain, both expressing the MHC class II gene Aq. Analysis of 224 F2 intercross mice with 170 microsatellite markers in a genome-wide scan suggested 4 quantitative trait loci controlling arthritis susceptibility located on chromosomes 6, 7, 8, and 10. The locus on chromosome 6 (Cia6), which was associated with arthritis onset, yielded a logarithm of odds score of 4.7 in the F2 intercross experiment and was reproduced in serial backcross experiments. Surprisingly, the DBA/1 allele had a recessive effect leading to a delay in arthritis onset. The suggestive loci on chromosomes 7 and 10 were associated with arthritis severity rather than onset, and another suggestive locus on chromosome 8 was most closely associated with arthritis incidence. The loci on chromosomes 7, 8, and 10 all appeared to contain disease-promoting alleles derived from the DBA/1 strain. Interestingly, most of the identified loci were situated in chromosomal regions that are homologous to regions in the rat genome containing susceptibility genes for arthritis; the mouse Cia6 locus is homologous with the rat Cia3, Pia5, Pia2, and Aia3; the locus on chromosome 7 (Cia7) is homologous with the rat Cia2; and the locus on chromosome 10 (Cia8) is homologous with the rat Cia4.
Publisher
The American Association of Immunologists
Subject
Immunology,Immunology and Allergy
Reference47 articles.
1. Silman, A. J.. 1994. Epidemiology of rheumatoid arthritis. APMIS 102: 721
2. Lynn, A. H., C. K. Kwoh, C. M. Venglish, C. E. Aston, A. Chakravarti. 1995. Genetic epidemiology of rheumatoid arthritis. Am. J. Hum. Genet. 57: 150
3. Kwoh, C. K., C. Venglish, A. H. Lynn, D. M. Whitley, E. Young, A. Chakravarti. 1996. Age, sex, and the familial risk of rheumatoid arthritis. Am. J. Epidemiol. 144: 15
4. Silman, A. J., A. J. MacGregor, W. Thomson, S. Holligan, D. Carthy, A. Farhan, W. E. Ollier. 1993. Twin concordance rates for rheumatoid arthritis: results from a nationwide study. Br. J. Rheumatol. 32: 903
5. Gregersen, P. K., J. Silver, R. J. Winchester. 1987. The shared epitope hypothesis: an approach to understanding the molecular genetics of susceptibility to rheumatoid arthritis. Arthritis Rheum. 30: 1205