Bim suppresses the development of SLE by limiting myeloid inflammatory responses

FuNien Tsai, Philip Homan, Hemant Agrawal, Alexander V. Misharin, Hiam Abdala‐Valencia, G. Kenneth Haines, Salina Dominguez, Christina L. Bloomfield, Rana Saber, Anthony Chang,

The Journal of Experimental Medicine · 2017 · 28 citations · 34 references

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Abstract

The Bcl-2 family is considered the guardian of the mitochondrial apoptotic pathway. We demonstrate that Bim acts as a molecular rheostat by controlling macrophage function not only in lymphoid organs but also in end organs, thereby preventing the break in tolerance. Mice lacking Bim in myeloid cells (LysM<sup>Cre</sup>Bim<sup>fl/fl</sup>) develop a systemic lupus erythematosus (SLE)-like disease that mirrors aged Bim<sup>-/-</sup> mice, including loss of marginal zone macrophages, splenomegaly, lymphadenopathy, autoantibodies (including anti-DNA IgG), and a type I interferon signature. LysM<sup>Cre</sup>Bim<sup>fl/fl</sup> mice exhibit increased mortality attributed to glomerulonephritis (GN). Moreover, the toll-like receptor signaling adaptor protein TRIF (TIR-domain-containing adapter-inducing interferon-β) is essential for GN, but not systemic autoimmunity in LysM<sup>Cre</sup>Bim<sup>fl/fl</sup> mice. Bim-deleted kidney macrophages exhibit a novel transcriptional lupus signature that is conserved within the gene expression profiles from whole kidney biopsies of patients with SLE. Collectively, these data suggest that the Bim may be a novel therapeutic target in the treatment of SLE.

References

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