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April 19, 2026Biochemistry and Biophysics Reports0 citationsOpen Access

Granzyme B-expressing regulatory B cells share the same origin as conventional blood B cells

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SGSteve GenebrierNSNicolas SaillietSTSamuel Bastos Serra Trinca

Key Points

  • This research aims to understand the ontogeny of granzyme B-expressing regulatory B cells and their relationship with conventional B cells.
  • Analyzed B cell receptor repertoire of GZMB + and GZMB − B cells from healthy donors and tolerant kidney-recipients.
  • Sorted cells based on granzyme B expression.
  • Conducted clonotype and diversity analyses to determine the relationship between the two B cell subsets.
  • GZMB + and GZMB − B cells shared similar B cell receptor repertoire features.
  • Limited overlap of clonotypes between GZMB + and GZMB − B cells within individual donors was observed.
  • Findings indicate GZMB + Bregs may originate from conventional mature B cells, shaped by environmental factors.

Abstract

Regulatory B cells (Bregs) play a pivotal role in various dysimmune conditions. We have previously demonstrated that granzyme B-expressing (GZMB + ) B cells are more numerous in patients with graft tolerance following kidney transplantation and that these cells display regulatory properties through GZMB. However, their ontogeny remains poorly understood. To address this gap, we analyzed the B cell receptor repertoire of GZMB + Bregs and GZMB − B cells sorted from healthy donors and drug-free tolerant kidney-graft recipients. This revealed that both subsets exhibited similar repertoire features in terms of diversity, V/J gene usage, CDR3 profile and somatic hypermutation pattern, suggesting a common origin and recent divergence. Furthermore, there was limited overlap between GZMB + and GZMB − clonotypes within individual donors. Taken together, although these observations should be interpreted with caution given the limited cohort size and considered primarily descriptive, these findings suggest that GZMB + Bregs likely arise from the conventional mature B cell pool and represent a differentiation state shaped by environmental cues rather than constituting a distinct clonal lineage. • GZMB + regulatory B cells emerge in transplant-tolerant patients via unclear pathways. • Repertoire analysis suggests recent GZMB + B cell differentiation from GZMB- precursors, within the limits of our dataset. • Based on clonotype analysis, GZMB + B cells are more likely induced by specific stimuli than to represent a discrete lineage.

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Cite This Study

Genebrier et al. (2026) studied this question.

synapsesocial.com/papers/69e471ef010ef96374d8e227https://doi.org/10.1016/j.bbrep.2026.102594
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