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Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia

INTRODUCTION: Hepatitis C virus (HCV) causes mixed cryoglobulinemia (MC) by driving clonal expansion of B cells expressing B cell receptors (BCRs), often encoded by the VH1-69 variable gene, endowed with both rheumatoid factor (RF) and anti-HCV specificity. These cells display an atypical CD21low ph...

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Autores principales: Del Padre, Martina, Marrapodi, Ramona, Minafò, Ylenia A., Piano Mortari, Eva, Radicchio, Giovanna, Bocci, Chiara, Gragnani, Laura, Camponeschi, Alessandro, Colantuono, Stefania, Stefanini, Lucia, Basili, Stefania, Carsetti, Rita, Fiorilli, Massimo, Casato, Milvia, Visentini, Marcella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945227/
https://www.ncbi.nlm.nih.gov/pubmed/36845129
http://dx.doi.org/10.3389/fimmu.2023.1094871
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author Del Padre, Martina
Marrapodi, Ramona
Minafò, Ylenia A.
Piano Mortari, Eva
Radicchio, Giovanna
Bocci, Chiara
Gragnani, Laura
Camponeschi, Alessandro
Colantuono, Stefania
Stefanini, Lucia
Basili, Stefania
Carsetti, Rita
Fiorilli, Massimo
Casato, Milvia
Visentini, Marcella
author_facet Del Padre, Martina
Marrapodi, Ramona
Minafò, Ylenia A.
Piano Mortari, Eva
Radicchio, Giovanna
Bocci, Chiara
Gragnani, Laura
Camponeschi, Alessandro
Colantuono, Stefania
Stefanini, Lucia
Basili, Stefania
Carsetti, Rita
Fiorilli, Massimo
Casato, Milvia
Visentini, Marcella
author_sort Del Padre, Martina
collection PubMed
description INTRODUCTION: Hepatitis C virus (HCV) causes mixed cryoglobulinemia (MC) by driving clonal expansion of B cells expressing B cell receptors (BCRs), often encoded by the VH1-69 variable gene, endowed with both rheumatoid factor (RF) and anti-HCV specificity. These cells display an atypical CD21low phenotype and functional exhaustion evidenced by unresponsiveness to BCR and Toll-like receptor 9 (TLR9) stimuli. Although antiviral therapy is effective on MC vasculitis, pathogenic B cell clones persist long thereafter and can cause virus-independent disease relapses. METHODS: Clonal B cells from patients with HCV-associated type 2 MC or healthy donors were stimulated with CpG or heath-aggregated IgG (as surrogate immune complexes) alone or in combination; proliferation and differentiation were then evaluated by flow cytometry. Phosphorylation of AKT and of the p65 NF-kB subunit were measured by flow cytometry. TLR9 was quantified by qPCR and by intracellular flow cytometry, and MyD88 isoforms were analyzed using RT-PCR. DISCUSSION: We found that dual triggering with autoantigen and CpG restored the capacity of exhausted VH1-69pos B cells to proliferate. The signaling mechanism for this BCR/TLR9 crosstalk remains elusive, since TLR9 mRNA and protein as well as MyD88 mRNA were normally expressed and CpG-induced phosphorylation of p65 NF-kB was intact in MC clonal B cells, whereas BCR-induced p65 NF-kB phosphorylation was impaired and PI3K/Akt signaling was intact. Our findings indicate that autoantigen and CpG of microbial or cellular origin may unite to foster persistence of pathogenic RF B cells in HCV-cured MC patients. BCR/TLR9 crosstalk might represent a more general mechanism enhancing systemic autoimmunity by the rescue of exhausted autoreactive CD21low B cells.
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spelling pubmed-99452272023-02-23 Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia Del Padre, Martina Marrapodi, Ramona Minafò, Ylenia A. Piano Mortari, Eva Radicchio, Giovanna Bocci, Chiara Gragnani, Laura Camponeschi, Alessandro Colantuono, Stefania Stefanini, Lucia Basili, Stefania Carsetti, Rita Fiorilli, Massimo Casato, Milvia Visentini, Marcella Front Immunol Immunology INTRODUCTION: Hepatitis C virus (HCV) causes mixed cryoglobulinemia (MC) by driving clonal expansion of B cells expressing B cell receptors (BCRs), often encoded by the VH1-69 variable gene, endowed with both rheumatoid factor (RF) and anti-HCV specificity. These cells display an atypical CD21low phenotype and functional exhaustion evidenced by unresponsiveness to BCR and Toll-like receptor 9 (TLR9) stimuli. Although antiviral therapy is effective on MC vasculitis, pathogenic B cell clones persist long thereafter and can cause virus-independent disease relapses. METHODS: Clonal B cells from patients with HCV-associated type 2 MC or healthy donors were stimulated with CpG or heath-aggregated IgG (as surrogate immune complexes) alone or in combination; proliferation and differentiation were then evaluated by flow cytometry. Phosphorylation of AKT and of the p65 NF-kB subunit were measured by flow cytometry. TLR9 was quantified by qPCR and by intracellular flow cytometry, and MyD88 isoforms were analyzed using RT-PCR. DISCUSSION: We found that dual triggering with autoantigen and CpG restored the capacity of exhausted VH1-69pos B cells to proliferate. The signaling mechanism for this BCR/TLR9 crosstalk remains elusive, since TLR9 mRNA and protein as well as MyD88 mRNA were normally expressed and CpG-induced phosphorylation of p65 NF-kB was intact in MC clonal B cells, whereas BCR-induced p65 NF-kB phosphorylation was impaired and PI3K/Akt signaling was intact. Our findings indicate that autoantigen and CpG of microbial or cellular origin may unite to foster persistence of pathogenic RF B cells in HCV-cured MC patients. BCR/TLR9 crosstalk might represent a more general mechanism enhancing systemic autoimmunity by the rescue of exhausted autoreactive CD21low B cells. Frontiers Media S.A. 2023-02-08 /pmc/articles/PMC9945227/ /pubmed/36845129 http://dx.doi.org/10.3389/fimmu.2023.1094871 Text en Copyright © 2023 Del Padre, Marrapodi, Minafò, Piano Mortari, Radicchio, Bocci, Gragnani, Camponeschi, Colantuono, Stefanini, Basili, Carsetti, Fiorilli, Casato and Visentini https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Del Padre, Martina
Marrapodi, Ramona
Minafò, Ylenia A.
Piano Mortari, Eva
Radicchio, Giovanna
Bocci, Chiara
Gragnani, Laura
Camponeschi, Alessandro
Colantuono, Stefania
Stefanini, Lucia
Basili, Stefania
Carsetti, Rita
Fiorilli, Massimo
Casato, Milvia
Visentini, Marcella
Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia
title Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia
title_full Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia
title_fullStr Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia
title_full_unstemmed Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia
title_short Dual stimulation by autoantigen and CpG fosters the proliferation of exhausted rheumatoid factor-specific CD21(low) B cells in hepatitis C virus-cured mixed cryoglobulinemia
title_sort dual stimulation by autoantigen and cpg fosters the proliferation of exhausted rheumatoid factor-specific cd21(low) b cells in hepatitis c virus-cured mixed cryoglobulinemia
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945227/
https://www.ncbi.nlm.nih.gov/pubmed/36845129
http://dx.doi.org/10.3389/fimmu.2023.1094871
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