High-Throughput Single-Cell Analysis of B Cell Receptor Usage among Autoantigen-Specific Plasma Cells in Celiac

Bishnudeo Roy1, Ralf S Neumann2, Omri Snir1

  • 1Department of Immunology, Centre for Immune Regulation, University of Oslo, Oslo University Hospital, 0372 Oslo, Norway.

Insights

Researchers characterized the autoantibody repertoire in celiac disease (CD) patients, finding specific B cell receptor (BCR) gene usage and pairings in transglutaminase 2 (TG2)-specific cells. This reveals features of antigen-specific antibody responses in CD.

Area of Science:

  • Immunology
  • Molecular Biology
  • Gastroenterology

Background:

  • Characterizing antigen-specific B cell receptor (BCR) repertoires is crucial for understanding humoral immunity in diseases.
  • Autoantibodies against transglutaminase 2 (TG2) are a hallmark of celiac disease (CD), with gut plasma cells (PCs) accumulating upon gluten ingestion.

Purpose of the Study:

  • To analyze the TG2-specific VH:VL autoantibody repertoire in gut PCs from CD patients.
  • To identify specific gene usage, pairing preferences, and mutational patterns within the TG2-specific BCR repertoire.

Main Methods:

  • Single-cell high-throughput sequencing was applied to gut lesion plasma cells (PCs) from 10 CD patients.
  • Paired heavy (VH) and light (VL) chain variable region sequences were analyzed for 1482 TG2-specific and 1421 non-TG2-specific PCs.

Main Results:

  • A striking bias in IGHV and IGKV/IGLV gene usage and pairing preferences, notably the IGHV5-51:IGKV1-5 pair, was observed in TG2-specific PCs.
  • TG2-specific PCs exhibited lower mutation numbers compared to non-TG2-specific PCs, particularly those utilizing IGHV5-51.
  • Selective amino acid changes, CDR3 length, and J segment selection were noted in TG2-specific IGHV5-51:IGKV1-5 pairs.

Conclusions:

  • The study reveals distinct features of the disease- and antigen-specific autoantibody repertoire in celiac disease.
  • Preferred VH:VL usage and pairings, limited mutations, clonal dominance, and specific CDR3 sequences characterize the TG2-specific BCR repertoire in CD.

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