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Updated: Apr 10, 2026

Adoptive Immunotherapy of iNKT Cells in Glucose-6-Phosphate Isomerase G6PI-Induced RA Mice
Published on: January 31, 2020
Genetic identification of the FcδR complex: TRβV12-4 as the IgD-binding domain targeted for immunotherapy in
Xiaoxi Hu1, Chenchen Han1, Dongliang Huang1
1Institute of Clinical Pharmacology, School of Pharmacy, Anhui Medical University, Key Laboratory of Anti-inflammatory and Immune Medicine, Ministry of Education, Anhui Collaborative Innovation Center of Anti-inflammatory and Immune Medicine, Center of Rheumatoid Arthritis of Anhui Medical University, Hefei 230032, China.
Introduction:
Rheumatoid arthritis (RA) is a chronic autoimmune disease that drives progressive joint destruction and functional disability. Current therapies are often limited by inadequate efficacy and risks of broad immunosuppression. Immunoglobulin D (IgD) is a conserved antibody isotype with poorly understood functions. We previously reported aberrant IgD secretion in RA and its capacity to activate T cells, yet the putative IgD receptor (FcδR) remained unidentified.
Objectives:
To identify and characterize FcδR, elucidate the molecular mechanisms involved in T-cell activation, define its pathogenic role in RA, and evaluate its therapeutic potential as a new target.
Methods:
FcδR was identified by affinity pull-down using IgD-Fc as bait, followed by mass spectrometry analysis. Molecular interactions were further confirmed by molecular docking, surface plasmon resonance (SPR) analysis and co-immunoprecipitation. IgD-triggered signaling was analyzed using CRISPR/Cas9-engineered TRβV12-4 knockout and overexpression cells. Therapeutic blockade was evaluated using IgD-Fc-Ig as a competitive antagonist in vitro and in vivo using AAV-mediated FcδR-overexpressing collagen-induced arthritis (CIA) mouse model.
Results:
FcδR was identified as a heteromeric complex of TRβV12-4 with CD3ε/CD3ζ. IgD binding to TRβV12-4 activated T cells via CD3-mediated Lck-ZAP70 signaling. The IgD-Fc-Ig fusion protein competitively blocked IgD-FcδR interaction, suppressing pathological T-cell activation. In CIA mice, FcδR expression correlated with inflammatory severity, and FcδR blockade via IgD-Fc-Ig administration significantly attenuated arthritic progression.
Conclusion:
This study identifies FcδR as a previously unrecognized IgD Fc receptor complex comprising TRβV12-4 and CD3ε/CD3ζ, triggering T-cell activation via IgD and driving RA pathogenesis. IgD-Fc-Ig competitively blocks IgD-FcδR and exerts therapeutic effects in CIA. These findings establish FcδR as a novel therapeutic target and a promising strategy for RA treatment.
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