Soluble Fas ligand drives autoantibody-induced arthritis by binding to DR5/TRAIL-R2.

Jeong, Dongjin; Kim, Hye Sung; Kim, Hye Young; Kang, Min Jueng; Jung, Hyeryeon; Oh, Yumi; Kim, Donghyun; Koh, Jaemoon et al. · Elife · 2021

basic_science · Level V

Where this comes from

Abstract

To date, no study has demonstrated that soluble Fas ligand (sFasL)-mediated inflammation is regulated via interaction with Fas in vivo. We found that FasL interacts specifically with tumor necrosis factor receptor superfamily (TNFRSF)10B, also known as death receptor (DR)5. Autoantibody-induced arthritis (AIA) was attenuated in FasL (<i>Fasl<sup>gld/gld</sup></i>)- and soluble FasL (<i>Fasl<sup>Δs/Δs</sup></i>)-deficient mice, but not in Fas (<i>Fas<sup>lpr/lpr</sup></i> and <i>Fas<sup>-/-</sup></i>)- or membrane FasL (<i>Fasl<sup>Δm/Δm</sup></i>)-deficient mice, suggesting sFasL promotes inflammation by binding to a Fas-independent receptor. Affinity purification mass spectrometry analysis using human (h) fibroblast-like synovial cells (FLSCs) identified DR5 as one of several proteins that could be the elusive Fas-independent FasL receptor. Subsequent cellular and biochemical analyses revealed that DR5 interacted specifically with recombinant FasL-Fc protein, although the strength of this interaction was approximately 60-fold lower than the affinity between TRAIL and DR5. A microarray assay using joint tissues from mice with arthritis implied that the chemokine CX3CL1 may play an important downstream role of the interaction. The interaction enhanced <i>Cx3cl1</i> transcription and increased sCX3CL1 production in FLSCs, possibly in an NF-κB-dependent manner. Moreover, the sFasL-DR5 interaction-mediated CX3CL1-CX3CR1 axis initiated and amplified inflammation by enhancing inflammatory cell influx and aggravating inflammation via secondary chemokine production. Blockade of FasL or CX3CR1 attenuated AIA. Therefore, the sFasL-DR5 interaction promotes inflammation and is a potential therapeutic target.

Medical subject headings