A shedding soluble form of interleukin-17 receptor D exacerbates collagen-induced arthritis through facilitating TNF-α-dependent receptor clustering

Rheumatoid arthritis (RA) is exacerbated by TNF-alpha signaling. However, it remains unclear whether TNF-α-activated TNFR1 and TNFR2 are regulated by extracellular factors. Here, we showed that soluble glycosylated interleukin-17 receptor D (sIL-17RD), which was produced by proteolytic cleavage, enh...

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Veröffentlicht in:Cellular & molecular immunology 2021-08, Vol.18 (8), p.1883-1895
Hauptverfasser: Liu, Sihan, Fu, Yanxia, Mei, Kunrong, Jiang, Yinan, Sun, Xiaojun, Wang, Yinyin, Ren, Fangli, Jiang, Congshan, Meng, Liesu, Lu, Shemin, Qin, Zhihai, Dong, Chen, Wang, Xinquan, Chang, Zhijie, Yang, Shigao
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Sprache:eng
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Zusammenfassung:Rheumatoid arthritis (RA) is exacerbated by TNF-alpha signaling. However, it remains unclear whether TNF-α-activated TNFR1 and TNFR2 are regulated by extracellular factors. Here, we showed that soluble glycosylated interleukin-17 receptor D (sIL-17RD), which was produced by proteolytic cleavage, enhanced TNF-α-induced RA. We revealed that IL-17RD shedding was induced by the proteolytic enzyme TACE and enhanced by TNF-α expression in macrophages. Intriguingly, sIL-17RD was elevated in the sera of arthritic mice and rats. Recombinant sIL-17RD significantly enhanced the TNF-α-induced proinflammatory response by promoting TNF-α-TNFR–sIL-17RD complex formation and receptor clustering, leading to the accelerated development of collagen-induced arthritis. Our observations revealed that ectodomain shedding of IL-17RD occurred in RA to boost the TNF-α-induced inflammatory response. Targeting sIL-17RD may provide a new strategy for the therapy of RA.
ISSN:1672-7681
2042-0226
2042-0226
DOI:10.1038/s41423-020-00548-w