Machine Learning Analysis of Naïve B-Cell Receptor Repertoires Stratifies Celiac Disease Patients and Controls

Or Shemesh1,2, Pazit Polak1,2, Knut E A Lundin3,4

  • 1Bioengineering, Faculty of Engineering, Bar Ilan University, Ramat Gan, Israel.

Insights

Researchers identified disease signatures in naive B cell receptor repertoires of celiac disease (CeD) patients using machine learning. This finding suggests a potential genetic influence and offers new avenues for CeD risk assessment.

Area of Science:

  • Immunology
  • Genetics
  • Computational Biology

Background:

  • Celiac disease (CeD) is an autoimmune disorder triggered by gluten, with high heritability.
  • HLA variants are major susceptibility factors, involving T cell presentation of gluten peptides.
  • The relationship between naive B cell receptor (BCR) repertoires and pathogenic effector cells in CeD is not well understood.

Purpose of the Study:

  • To explore the relationship between naive B cell receptor repertoires and celiac disease.
  • To identify potential disease susceptibility markers within naive BCR repertoires using machine learning.

Main Methods:

  • Application of machine learning classification models to analyze naive BCR repertoires from CeD patients and healthy controls.
  • Inference of BCR heavy and light chain sequence clusters to serve as model features.
  • Characterization of disease-associated signatures, including amino acid motifs and V/J gene usage.

Main Results:

  • Machine learning models achieved a promising F1 score of 85% in classifying CeD patients based on naive BCR repertoires.
  • Identified CeD-associated clusters and characterized common motifs within naive BCR repertoires.
  • Found distinct bio-physiochemical characteristics in amino acid 3-mers and enriched V and J genes associated with CeD.

Conclusions:

  • Naive BCR repertoires contain identifiable disease-associated clusters and motifs relevant to celiac disease.
  • Results suggest a potential genetic influence of BCR encoding genes in CeD pathogenesis.
  • Analysis of naive BCR repertoires shows promise as a tool for assessing celiac disease susceptibility and risk.

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