Mass spectrometry-based analysis of rheumatoid factor

peer-reviewed · Frontiers in Immunology · 2025

peer-reviewed · Frontiers in Immunology · 2025. Jonas De Leeuw et al. Introduction Rheumatoid factor (RF) are autoantibodies that are found in approximately two thirds of patients…
Date 2025-10-10
Type peer-reviewed
Venue Frontiers in Immunology
Publisher Frontiers Media SA
Contribution downstream-application
DOI 10.3389/fimmu.2025.1644334
Citations (OpenAlex) 0

Abstract

Introduction Rheumatoid factor (RF) are autoantibodies that are found in approximately two thirds of patients with rheumatoid arthritis, a chronic autoimmune disease characterized by potentially destructive inflammation of the joints. RF consists of polyclonal antibodies targeting the Fc part of immunoglobulin G. Despite its clinical relevance, RF is not specific for RA, and conventional assays for RF detection, predominantly solid-phase tests detecting IgM RF, suffer from poor harmonization and the disability to test more than one RF isotype. Methods We studied RF using a mass-spectrometry-based approach in RF(+), RF(-) rheumatoid arthritis patients and in disease controls. This allowed evaluation of RF at the amino acid level, including the variable and hypervariable region part of RF. RF was captured on Fc coated microwell plates, isolated, digested into peptides and analyzed by liquid chromatography tandem mass spectrometry. An initial proof-of-concept analysis was conducted comprising 12 samples, followed by a larger-scale experiment comprising 86 samples. Results Principal component analysis and sparse partial least squares discriminant analysis demonstrated that RF(+) RA patients displayed peptides that were differentially expressed compared with disease control patients. Framework region-derived peptides, variable region-derived peptides as well as de novo sequenced peptides not present in the human proteome database, were found to be enriched in RF(+) sera compared to disease control sera. Interestingly, some of these peptides were also upregulated in sera from RF(-) RA patients. Furthermore, mass spectrometry analysis revealed different RF isotypes. In addition to IgM, also IgA and IgG isotypes were observed. RF-IgG2 isotype was observed in RF(+) as well as in RF(-) RA patients. Discussion In summary, our findings highlight that mass spectrometry provides a platform for elucidating the heterogeneity and isotypic diversity of RF autoantibodies in RA, overcoming limitations inherent to current solid-phase RF assays. Upregulated de novo peptides were found, possibly related to the hypervariable regions of RF. Further validation using integrated proteomic and genomic approaches is required to confirm these novel peptides and their localization within the RF hypervariable regions.

Authors

  1. Jonas De Leeuw · KU Leuven, Universitair Ziekenhuis Leuven
  2. Birthe Michiels · KU Leuven, Universitair Ziekenhuis Leuven
  3. Rita Derua · KU Leuven
  4. Tom Dehaemers · KU Leuven, Universitair Ziekenhuis Leuven
  5. Doreen Dillaerts · KU Leuven, Universitair Ziekenhuis Leuven
  6. Maaike Cockx · KU Leuven, Universitair Ziekenhuis Leuven
  7. Glynis Frans · KU Leuven, Universitair Ziekenhuis Leuven
  8. Sebastien Carpentier · Alliance Bioversity International - CIAT, Ghent University, KU Leuven, Wageningen University & Research
  9. Patrick Verschueren · KU Leuven, Universitair Ziekenhuis Leuven
  10. Xavier Bossuyt · KU Leuven, Universitair Ziekenhuis Leuven

Methods and tools

  • Rheumatoid factor CDR peptide profiling: Rheumatoid factor autoantibodies were captured, digested and profiled by LC-MS/MS; de novo sequenced variable-region peptides not in the human proteome were among those discriminating RF-positive rheumatoid arthritis patients.

Methods it uses

  • PEAKS: Commercial DP-based de novo

Data deposited

  • Mass spectrometric analysis of Rheumatoid factor — as deposited · PXD063283

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