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The IFN-γ receptor promotes immune dysregulation and disease in STING gain-of-function mice
W. Alexander Stinson, Cathrine A. Miner, Fang R. Zhao, Annena Jane Lundgren, Subhajit Poddar, Jonathan J. Miner
W. Alexander Stinson, Cathrine A. Miner, Fang R. Zhao, Annena Jane Lundgren, Subhajit Poddar, Jonathan J. Miner
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Research Article Inflammation

The IFN-γ receptor promotes immune dysregulation and disease in STING gain-of-function mice

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Abstract

STING gain-of-function mutations cause STING-associated vasculopathy with onset in infancy (SAVI) in humans, a disease characterized by spontaneous lung inflammation and fibrosis. Mice with STING gain-of-function mutations (SAVI mice) develop αβ T cell–dependent lung disease and also lack lymph nodes. Although SAVI has been regarded as a type I interferonopathy, the relative contributions of the three interferon receptors are incompletely understood. Here, we show that STING gain of function led to upregulation of IFN-γ–induced chemokines in the lungs of SAVI mice and that deletion of the type II IFN receptor (IFNGR1), but not the type I IFN receptor (IFNAR1) or type III IFN receptor (IFNλR1), ameliorated lung disease and restored lymph node development in SAVI mice. Furthermore, deletion of IFNGR1, but not IFNAR1 or IFNλR1, corrected the ratio of effector to Tregs in SAVI mice and in mixed bone marrow chimeric mice. Finally, cultured SAVI mouse macrophages were hyperresponsive to IFN-γ, but not IFN-β, in terms of Cxcl9 upregulation and cell activation. These results demonstrate that IFNGR1 plays a major role in autoinflammation and immune dysregulation mediated by STING gain of function.

Authors

W. Alexander Stinson, Cathrine A. Miner, Fang R. Zhao, Annena Jane Lundgren, Subhajit Poddar, Jonathan J. Miner

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Figure 4

Deletion of IFNGR1 partially rescues Treg and lymph node deficiencies in SAVI mice.

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Deletion of IFNGR1 partially rescues Treg and lymph node deficiencies in...
(A) Representative FACS plots depicting gating strategy to define splenic CD25+ FoxP3+ Tregs from STING N153S (SAVI) and Ifngr1–/– SAVI mice (top) and WT and Ifngr1–/– animals (bottom). Cells were pregated on CD3ε+NK1.1–CD4+CD8– T cells. (B) Numbers of splenic Tregs and the ratio of the number of splenic CD4+ and CD8α+ Teff cells to Tregs in 13- to 16-week-old SAVI mice (left) or their WT STING-expressing littermates (right), including corresponding knockout animals lacking the indicated IFN receptor. Data are shown as the mean ± SEM of n = 9–18 mice per genotype pooled from 3 to 6 independent experiments. (C) Images of retroperitoneal and inguinal lymph nodes from SAVI mice, Ifngr1–/– SAVI mice, WT mice, and Ifngr1–/– mice, 15 minutes after injection of Evans blue dye. Representative sections of H&E-stained inguinal fat pads further displays lymph node development. Scale bar: 100 µm. (D) Number of lymph nodes in WT mice versus Ifngr1–/– mice and SAVI mice versus Ifngr1–/– SAVI mice. Data are shown as the mean ± SEM of n = 14–17 mice per genotype. Data in B were analyzed by Kruskal-Wallis test. Data in D were analyzed by Mann-Whitney test. ****P < 0.0001.

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