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The myeloid IL-1 receptor limits IL-27–mediated endothelial type I IFN during nephrotoxic serum nephritis
Yanting Chen, Yu Li, Jiafa Ren, Chia-Chun Wu, Xiaohan Lu, Achintya Inumarty, Steven D. Crowley, Jamie R. Privratsky
Yanting Chen, Yu Li, Jiafa Ren, Chia-Chun Wu, Xiaohan Lu, Achintya Inumarty, Steven D. Crowley, Jamie R. Privratsky
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Research Article Immunology Inflammation Nephrology

The myeloid IL-1 receptor limits IL-27–mediated endothelial type I IFN during nephrotoxic serum nephritis

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Abstract

Autoimmune kidney diseases can cause glomerulonephritis and tubulointerstitial nephritis, which if unresolved, lead to progressive glomerulosclerosis and tubulointerstitial fibrosis. The IL-1 receptor (IL-1R1) is known to have divergent and cell-specific effects in kidney injury. We hypothesized that IL-1R1 would dampen pro-inflammatory activation of myeloid cells such that deletion of myeloid cell IL-1R1 would exacerbate autoimmune nephritis. Mice with myeloid cell–specific deletion of IL-1R1 (LysMCre+/Il1r1fl/fl, hereafter MKO) and littermate controls (LysMCre–/Il1r1fl/fl, MWT) were subjected to nephrotoxic serum (NTS) nephritis. MKO mice demonstrated worsened glomerular and tubular injury as indicated by increased albuminuria, glomerular injury scores, and kidney mRNA levels of kidney injury molecule 1 (KIM-1) (Havcr1) and neutrophil gelatinase-associated lipocalin (NGAL/Lcn2). We further found that myeloid IL-1R1 deficiency resulted in increased myeloid cell ER stress and expression of the heterodimeric cytokine Ebi3/Il27a (IL-27). IL-27 then induced increased type I IFN expression by kidney endothelial cells. In turn, anti–IL-27 limited type I IFN expression in endothelial cells and NTS nephritis, and anti-IFNAR1 therapy ameliorated glomerular and tubular injury in MKO mice. Thus, we demonstrated a myeloid cell/endothelial cell immunoregulatory axis whereby myeloid IL-1R1 activity constrained endothelial type I IFN generation to limit chronic kidney damage.

Authors

Yanting Chen, Yu Li, Jiafa Ren, Chia-Chun Wu, Xiaohan Lu, Achintya Inumarty, Steven D. Crowley, Jamie R. Privratsky

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Figure 2

NTS nephritis induces IFN-stimulated genes, and MKO mice display elevated type I IFN signaling.

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NTS nephritis induces IFN-stimulated genes, and MKO mice display elevate...
(A and B) Kidneys from vehicle (Veh) or NTS nephritis–injured mice (day 9) were harvested, scRNA-seq was performed on whole kidney digests, and pseudo-bulk analysis was performed grouping all kidney clusters together by sample (Veh or day 9). (A) Volcano plot showing differentially expressed genes between Veh and day 9 kidneys with (B) top 20 significantly upregulated genes in day 9 NTS kidneys (IFN-stimulated genes in red). (C–E) MWT and MKO mice were subjected to NTS nephritis, and kidneys were harvested at day 9 with Western blot (C) and densitometry (D) for nuclear levels of IRF7 displayed in box plot (n = 5–6; *P < 0.05 by unpaired 2-tailed t test). (E) CD11b+ myeloid cells (live/single cell/CD45+Ly6G–CD11b+) were sorted from NTS nephritis–injured MWT and MKO kidneys, RT-PCR was performed, and box plots show mRNA levels of Ifnb1, Ifna4, Ifna5 (n = 6–9; not significant by unpaired 2-tailed t test; schematic created with BioRender.com). (F–N) Flow cytometry was performed on NTS nephritis injured–MWT and MKO whole kidney digests with gating strategy for cell populations shown in pseudocolor plots in F. Dot plots display enumeration for (G) CD45+ (live/single cell), (H) neutrophils (PMN, CD45+CD11b+Ly6G+), (I) Ly6chi monocytes (iMono, CD45+Ly6G–MHCII–CD64+Ly6Chi), (J) Ly6clo monocytes (rMono, CD45+Ly6G–MHCII–CD64+Ly6Clo), (K) conventional DC 1 (cDC1) (CD45+Ly6G–MHCII+CD64–CD11c+CD103hiCD11b–), (L) cDC2 (CD45+Ly6G–MHCII+CD64–CD11c+CD103loCD11b+), (M) CD11bhi macrophages (CD11bhi, CD45+Ly6G–MHCII+CD64+CD11bhiF4/80lo), and (N) F480hi macrophages (F480hi, CD45+Ly6G–MHCII+CD64+CD11bmidF480hi). There were no statistically significant differences between genotypes for any cell population as determined by unpaired 2-tailed t tests (n = 8–10). Squares represent male animals.

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