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Published on: May 16, 2025
Insights into FcγR involvement in pain-like behavior induced by an RA-derived anti-modified protein autoantibody
Alexandra Jurczak1, Katalin Sandor1, Alex Bersellini Farinotti1
1Department of Physiology and Pharmacology, Center for Molecular Medicine, Karolinska Institutet, Solnavägen 9, 171 65, Sweden.
Abstract:
Joint pain is one of the most debilitating symptoms of rheumatoid arthritis (RA) and patients frequently rate improvements in pain management as their priority. RA is hallmarked by the presence of anti-modified protein autoantibodies (AMPA) against post-translationally modified citrullinated, carbamylated and acetylated proteins. It has been suggested that autoantibody-mediated processes represent distinct mechanisms contributing to pain in RA. In this study, we investigated the pronociceptive properties of monoclonal AMPA 1325:01B09 (B09 mAb) derived from the plasma cell of an RA patient. We found that B09 mAb induces pain-like behavior in mice that is not associated with any visual, histological or transcriptional signs of inflammation in the joints, and not alleviated by non-steroidal anti-inflammatory drugs (NSAIDs). Instead, we found that B09 mAb is retained in dorsal root ganglia (DRG) and alters the expression of several satellite glia cell (SGC), neuron and macrophage-related factors in DRGs. Using mice that lack activating FcγRs, we uncovered that FcγRs are critical for the development of B09-induced pain-like behavior, and partially drive the transcriptional changes in the DRGs. Finally, we observed that B09 mAb binds SGC in vitro and in combination with external stimuli like ATP enhances transcriptional changes and protein release of pronociceptive factors from SGCs. We propose that certain RA antibodies bind epitopes in the DRG, here on SGCs, form immune complexes and activate resident macrophages via FcγR cross-linking. Our work supports the growing notion that autoantibodies can alter nociceptor signaling via mechanisms that are at large independent of local inflammatory processes in the joint.
Insights
Certain rheumatoid arthritis (RA) antibodies, specifically anti-modified protein autoantibodies (AMPA), can cause joint pain by affecting nerve cells in the dorsal root ganglia (DRG), independent of joint inflammation.
Area of Science:
- Immunology
- Neuroscience
- Rheumatology
Background:
- Rheumatoid arthritis (RA) joint pain is a primary concern for patients.
- RA is characterized by autoantibodies against modified proteins.
- Autoantibody-mediated processes may contribute to RA pain.
Purpose of the Study:
- Investigate the pain-inducing properties of a specific RA-derived monoclonal anti-modified protein autoantibody (AMPA), B09 mAb.
- Determine the mechanisms by which this antibody affects pain signaling.
Main Methods:
- Administered B09 mAb to mice to assess pain-like behavior.
- Analyzed joint and dorsal root ganglia (DRG) for inflammation and gene expression changes.
- Utilized FcγR-deficient mice to investigate the role of Fcγ receptors (FcγRs).
- Examined B09 mAb binding to satellite glial cells (SGCs) in vitro.
Main Results:
- B09 mAb induced pain-like behavior without joint inflammation.
- The antibody localized to DRGs, altering gene expression in SGCs, neurons, and macrophages.
- FcγRs were essential for B09 mAb-induced pain and DRG transcriptional changes.
- B09 mAb bound SGCs and, with stimuli like ATP, enhanced pronociceptive factor release.
Conclusions:
- RA-associated AMPA can induce pain via DRG mechanisms, independent of joint inflammation.
- Antibody binding to DRG SGCs, FcγR activation, and subsequent macrophage involvement are implicated.
- This study highlights a novel pathway for autoantibody-driven pain in RA.

