Development of murine lupus involves the combined genetic contribution of the SLAM and FcγR intervals within the Nba2 autoimmune susceptibility locus
Author
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Jørgensen, Trine N.
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Alfaro, Jennifer
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Enriquez, Hilda L.
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Jiang, Chao
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Loo, William M.
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Atencio, Stephanie
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Gubbels Bupp, Melanie R.
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Mailloux, Christina M.
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Metzger, Troy
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Flannery, Shannon
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Rozzo, Stephen J.
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Kotzin, Brian L.
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Rosemblatt Silber, Mario César
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Bono Merino, María Rosa
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Admission date
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2018-12-20T14:06:17Z
Available date
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2018-12-20T14:06:17Z
Publication date
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2010
Cita de ítem
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Journal of Immunology, Volumen 184, Issue 2, 2018, Pages 775-786
Identifier
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00221767
Identifier
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15506606
Identifier
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10.4049/jimmunol.0901322
Identifier
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https://repositorio.uchile.cl/handle/2250/153891
Abstract
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Autoantibodies are of central importance in the pathogenesis of Ab-mediated autoimmune disorders. The murine lupus susceptibility locus Nba2 on chromosome 1 and the syntenic human locus are associated with a loss of immune tolerance that leads to antinuclear Ab production. To identify gene intervals within Nba2 that control the development of autoantibody-producing B cells and to determine the cellular components through which Nba2 genes accomplish this, we generated congenic mice expressing various Nba2 intervals where genes for the FcγR, SLAM, and IFN-inducible families are encoded. Analysis of congenic strains demonstrated that the FcγR and SLAM intervals independently controlled the severity of autoantibody production and renal disease, yet are both required for lupus susceptibility. Deregulated homeostasis of terminally differentiated B cells was found to be controlled by the FcγR interval where FcγRIIb-mediated apoptosis of germinal center B cells and plasma cells was impaired. I