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Publication : TLR7-Mediated Lupus Nephritis Is Independent of Type I IFN Signaling.

First Author  Wolf SJ Year  2018
Journal  J Immunol Volume  201
Issue  2 Pages  393-405
PubMed ID  29884703 Mgi Jnum  J:264079
Mgi Id  MGI:6192175 Doi  10.4049/jimmunol.1701588
Citation  Wolf SJ, et al. (2018) TLR7-Mediated Lupus Nephritis Is Independent of Type I IFN Signaling. J Immunol 201(2):393-405
abstractText  Systemic lupus erythematosus is an autoimmune disease characterized by increased type I IFNs, autoantibodies, and inflammatory-mediated multiorgan damage. TLR7 activation is an important contributor to systemic lupus erythematosus pathogenesis, but the mechanisms by which type I IFNs participate in TLR7-driven pathologic conditions remain uncertain. In this study, we examined the requirement for type I IFNs in TLR7-stimulated lupus nephritis. Lupus-prone NZM2328, INZM (which lack a functional type I IFN receptor), and NZM2328 IL-1beta(-/-) mice were treated at 10 wk of age on the right ear with R848 (TLR7 agonist) or control (DMSO). Autoantibody production and proteinuria were assessed throughout treatment. Multiorgan inflammation was assessed at the time of decline in health. Renal infiltrates and mRNA expression were also examined after 14 d of treatment. Both NZM2328 and INZM mice exhibited a decline in survival after 3-4 wk of R848 but not vehicle treatment. Development of splenomegaly and liver inflammation were dependent on type I IFN. Interestingly, autoantibody production, early renal infiltration of dendritic cells, upregulation of IL-1beta, and lupus nephritis occurred independent of type I IFN signaling. Development of TLR7-driven lupus nephritis was not abolished by the deletion of IL-1beta. Thus, although IFN-alpha is sufficient to induce nephritis acceleration, our data emphasize a critical role for IFN-independent signaling in TLR7-mediated lupus nephritis. Further, despite upregulation of IL-1beta after TLR7 stimulation, deletion of IL-1beta is not sufficient to reduce lupus nephritis development in this model.
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