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Genetic dissection of lupus pathogenesis: a recipe for nephrophilic autoantibodies
Chandra Mohan, Laurence Morel, Ping Yang, Hiroshi Watanabe, Byron Croker, Gary Gilkeson, Edward K. Wakeland
Chandra Mohan, Laurence Morel, Ping Yang, Hiroshi Watanabe, Byron Croker, Gary Gilkeson, Edward K. Wakeland
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Article

Genetic dissection of lupus pathogenesis: a recipe for nephrophilic autoantibodies

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Abstract

Sle1 and Sle3 are 2 loci that confer susceptibility to lupus nephritis in the NZM2410 strain of mice. Our previous work has shown that B6.NZMc1 mice, congenic for Sle1, exhibit loss of tolerance to chromatin but do not develop any pathogenic autoantibodies or disease. B6.NZMc7 mice, congenic for Sle3, exhibit low-grade polyclonal B- and T-cell activation, elevated CD4/CD8 ratios, and mildly penetrant glomerulonephritis. In contrast to these monocongenics, the present study reveals that B6.NZMc1|c7 mice, bicongenic for Sle1 and Sle3, exhibit splenomegaly, significantly expanded populations of activated B and CD4+ T cells, and a robust, variegated IgG autoantibody response targeting multiple components of chromatin (including double-stranded DNA), intact glomeruli, and basement membrane matrix antigens. As one might predict, these mice, particularly the females, exhibit highly penetrant glomerulonephritis.

Authors

Chandra Mohan, Laurence Morel, Ping Yang, Hiroshi Watanabe, Byron Croker, Gary Gilkeson, Edward K. Wakeland

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ISSN: 0021-9738 (print), 1558-8238 (online)

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