Regulatory B Cells Expressing Granzyme B from Tolerant Renal Transplant Patients: Highly Differentiated B Cells with a Unique Pathway with a Specific Regulatory Profile and Strong Interactions with Immune System Cells

Author:

Sailliet Nicolas1,Dupuy Amandine1,Brinas François1,Renaudin Karine12,Colas Luc1,Kerleau Clarisse1ORCID,Nguyen Thi-Van-Ha1,Fourgeux Cynthia1ORCID,Poschmann Jérémie1,Gosset Clément3,Giral Magali145,Degauque Nicolas1ORCID,Mai Hoa Le1,Danger Richard1ORCID,Brouard Sophie145

Affiliation:

1. CHU Nantes, Nantes Université, INSERM, Center for Research in Transplantation and Translational Immunology (CR2TI), UMR 1064, ITUN, 44000 Nantes, France

2. CHU Nantes, Service d’Anatomie et Cytologie Pathologiques, 44000 Nantes, France

3. Service de Néphrologie et Transplantation rénale—CHU Pasteur2, 06000 Nice, France

4. Centre d’Investigation Clinique en Biothérapie, Centre de Ressources Biologiques (CRB), CHU Nantes, 44000 Nantes, France

5. LabEx IGO “Immunotherapy, Graft, Oncology”, Nantes Université, 44000 Nantes, France

Abstract

The aim of our study was to determine whether granzyme B-expressing regulatory B cells (GZMB+ B cells) are enriched in the blood of transplant patients with renal graft tolerance. To achieve this goal, we analysed two single-cell RNA sequencing (scRNAseq) datasets: (1) peripheral blood mononuclear cells (PBMCs), including GZMB+ B cells from renal transplant patients, i.e., patients with stable graft function on conventional immunosuppressive treatment (STA, n = 3), drug-free tolerant patients (TOL, n = 3), and patients with antibody-mediated rejection (ABMR, n = 3), and (2) ex-vivo-induced GZMB+ B cells from these groups. In the patient PBMCs, we first showed that natural GZMB+ B cells were enriched in genes specific to Natural Killer (NK) cells (such as NKG7 and KLRD1) and regulatory B cells (such as GZMB, IL10, and CCL4). We performed a pseudotemporal trajectory analysis of natural GZMB+ B cells and showed that they were highly differentiated B cells with a trajectory that is very different from that of conventional memory B cells and linked to the transcription factor KLF13. By specifically analysing GZMB+ natural B cells in TOLs, we found that these cells had a very specific transcriptomic profile associated with a reduction in the expression of HLA molecules, apoptosis, and the inflammatory response (in general) in the blood and that this signature was conserved after ex vivo induction, with the induction of genes associated with migration processes, such as CCR7, CCL3, or CCL4. An analysis of receptor/ligand interactions between these GZMB+/− natural B cells and all of the immune cells present in PBMCs also demonstrated that GZMB+ B cells were the B cells that carried the most ligands and had the most interactions with other immune cells, particularly in tolerant patients. Finally, we showed that these GZMB+ B cells were able to infiltrate the graft under inflammatory conditions, thus suggesting that they can act in locations where immune events occur.

Funder

LabEX IGO program

ANR BIKET

National Research Agency under the program “Investissements d’avenir”

European Union’s Horizon 2020 Research and Innovation Programme

CEVA santé Animale

Publisher

MDPI AG

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