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Mesenchymal TNFR2 promotes the development of polyarthritis and comorbid heart valve stenosis
Maria Sakkou, Panagiotis Chouvardas, Lydia Ntari, Alejandro Prados, Kristin Moreth, Helmut Fuchs, Valerie Gailus-Durner, Martin Hrabe de Angelis, Maria C. Denis, Niki Karagianni, George Kollias
Maria Sakkou, Panagiotis Chouvardas, Lydia Ntari, Alejandro Prados, Kristin Moreth, Helmut Fuchs, Valerie Gailus-Durner, Martin Hrabe de Angelis, Maria C. Denis, Niki Karagianni, George Kollias
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Research Article

Mesenchymal TNFR2 promotes the development of polyarthritis and comorbid heart valve stenosis

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Abstract

Mesenchymal TNF signaling is etiopathogenic for inflammatory diseases such as rheumatoid arthritis and spondyloarthritis (SpA). The role of Tnfr1 in arthritis has been documented; however, Tnfr2 functions are unknown. Here, we investigate the mesenchymal-specific role of Tnfr2 in the TnfΔARE mouse model of SpA in arthritis and heart valve stenosis comorbidity by cell-specific, Col6a1-cre–driven gene targeting. We find that TNF/Tnfr2 signaling in resident synovial fibroblasts (SFs) and valvular interstitial cells (VICs) is detrimental for both pathologies, pointing to common cellular mechanisms. In contrast, systemic Tnfr2 provides protective signaling, since its complete deletion leads to severe deterioration of both pathologies. SFs and VICs lacking Tnfr2 fail to acquire pathogenic activated phenotypes and display increased expression of antiinflammatory cytokines associated with decreased Akt signaling. Comparative RNA sequencing experiments showed that the majority of the deregulated pathways in TnfΔARE mesenchymal-origin SFs and VICs, including proliferation, inflammation, migration, and disease-specific genes, are regulated by Tnfr2; thus, in its absence, they are maintained in a quiescent nonpathogenic state. Our data indicate a pleiotropy of Tnfr2 functions, with mesenchymal Tnfr2 driving cell activation and arthritis/valve stenosis pathogenesis only in the presence of systemic Tnfr2, whereas nonmesenchymal Tnfr2 overcomes this function, providing protective signals and, thus, containing both pathologies.

Authors

Maria Sakkou, Panagiotis Chouvardas, Lydia Ntari, Alejandro Prados, Kristin Moreth, Helmut Fuchs, Valerie Gailus-Durner, Martin Hrabe de Angelis, Maria C. Denis, Niki Karagianni, George Kollias

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Figure 3

Mesenchymal Tnfr2 is required for fibroblast pathogenic activation in the ankle joint and the heart valve.

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Mesenchymal Tnfr2 is required for fibroblast pathogenic activation in th...
Representative histogram for ICAM expression on crude joint cell preparations, performed by ICAM staining and FACS analysis (A). Graph bars include the quantitation of these data, depicting ICAM-1+, synovial fibroblast (SF) % over the gated Cd45–, Cd31– cell population (B), and double α-smooth muscle actin (α-SMA)+/vimentin+ valvular interstitial cells (VICs) % in crude heart valve preparations over a similarly Cd45–, Cd31– gated cell population (C) (n = 6 mice /genotype). Representative images of aortic valve leaflet sections stained for α-SMA (green), vimentin (red), and DAPI (D). Bottom panels are 2× zoom-in of the indicated region of interests (ROIs) in the upper panels. Scale bar: 200 μm. (E) Mean fluorescence Intensity for Vcam-1 and ICAM expression quantified by immunostaining on cultured SFs and subsequent FACS analysis, (n = 4 mice/genotype). (F) Representative gelatin zymogram showing MMP-9 and MMP-2 secretion from cultured SFs, treated with 10 ng/ml TNF as indicated. (G) Graph bars representing % of double α-SMA+/vimentin+ cells in cultured VICs, quantified by staining and FACS analysis (n = 4 mice/genotype). (H) Representative histograms for Tnfr1 expression on SFs and VICs performed by Tnfr1 staining and FACS analysis. (I) ELISA measurements of circulating soluble TNF in serum of 16-week-old mice (n = 15 mice/ genotype) and of secreted TNF in supernatants of cultured SFs and VICs (n = 15 mice/genotype for SFs and 9 mice/genotype for VICs) as indicated; the data are represented as means ± SEM, in all the quantifications; and 1-way ANOVA and Bonferroni’s multiple comparison tests were used to analyze groups for statistical significance (*P < 0.05, **P < 0.001, ***P < 0.0001).

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