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The RNA binding protein Arid5a is an activator of TNF signaling in rheumatoid arthritis
Yang Li, Ipsita Dey, Shachi P. Vyas, Alzbeta Synackova, Decheng Li, Erik Lubberts, Dana P. Ascherman, Peter Draber, Sarah L. Gaffen
Yang Li, Ipsita Dey, Shachi P. Vyas, Alzbeta Synackova, Decheng Li, Erik Lubberts, Dana P. Ascherman, Peter Draber, Sarah L. Gaffen
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Research Article Immunology

The RNA binding protein Arid5a is an activator of TNF signaling in rheumatoid arthritis

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Abstract

Rheumatoid arthritis (RA) is characterized by joint inflammation and bone erosion. Understanding cytokine pathways, particularly those targeting TNF, is crucial for understanding pathology and advancing treatment development. Arid5a is a noncanonical RNA binding protein (RBP) that augments inflammation through stabilizing proinflammatory mRNAs and enhancing protein translation. We examined published datasets for ARID5A in human RA blood, T cells, and synovial tissues. A stromal cell line, epithelial cells, and primary synovial fibroblasts were used to assess the effect of TNF on Arid5a expression, localization, and function. To determine how TNF induces Arid5a, WT or Traf2–/– stromal cells were treated with NIK or IKK inhibitors. To evaluate the necessity of Arid5a in arthritis progression, Arid5a–/– mice were subjected to collagen-induced arthritis. ARID5A was elevated in patients with RA and reduced by anti-TNF therapy. TNF upregulated Arid5a through the NF-κB1/TRAF2 pathway, causing cytoplasmic relocalization. Arid5a stabilized proinflammatory transcripts and enhanced expression of chemokines that drive RA. Arid5a–/– mice were resistant to collagen-induced arthritis correlating with reduced Th17 cells in synovial tissue. Thus, Arid5a serves as a newly recognized signaling intermediate downstream of TNF that is elevated in human RA and drives pathology in murine CIA, potentially positioning this RBP as a possible therapeutic target.

Authors

Yang Li, Ipsita Dey, Shachi P. Vyas, Alzbeta Synackova, Decheng Li, Erik Lubberts, Dana P. Ascherman, Peter Draber, Sarah L. Gaffen

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Figure 4

TRAF2 inhibits Arid5a through IKK-dependent NF-κB signaling.

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TRAF2 inhibits Arid5a through IKK-dependent NF-κB signaling.
WT or Traf2...
WT or Traf2–/– ST2 cells were pretreated with NIKi for 16 hours followed by TNF + NIKi for the indicated times. (A) Nuclear lysates were immunoblotted for NF-κB1, NF-κB2, or YY1, representative of 4 experiments. Densitometry is shown at right (n = 4). Each symbol represents 1 sample. (B) Indicated genes assessed by qPCR. Each symbol represents the mean ± SEM of 3 individual samples. (C) WT or Traf2–/– ST2 cells were pretreated with IKKi for 20 hours, treated with TNF + IKKi for 1 hour, and genes assessed by qPCR (n = 6). Analyzed by 1-way ANOVA with Šídák’s test comparing control to IKKi treatment. Data are representative of 3 experiments. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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