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PMID: 39038910 Published · epublish English

Acetylated bacterial proteins as potent antigens inducing an anti-modified protein antibody response.

RMD open ·Vol. 10 ·No. 3 ·2024-00-22

Volkov M, Kampstra ASB, van Schie KAJ, van Mourik AG, Kwekkeboom JC, de Ru A, van Veelen PA, Huizinga TWJ, Toes REM, van der Woude D

Abstract

Gut-residing bacteria, such as Escherichia coli, can acetylate their proteome under conditions of amine starvation. It is postulated that the (gut) microbiome is involved in the breach of immune tolerance to modified self-proteins leading to the anti-modified protein antibodies (AMPAs), hallmarking seropositive rheumatoid arthritis (RA). Our aim was to determine whether acetylated bacterial proteins can induce AMPA responses cross-reactive to modified self-proteins and be recognised by human AMPA (hAMPA). E. coli bacteria were grown under amine starvation to generate endogenously acetylated bacterial proteins. Furthermore, E. coli proteins were acetylated chemically. Recognition of these proteins by hAMPA was analysed by western blotting and ELISA; recognition by B cells carrying a modified protein-reactive B cell receptor (BCR) was analysed by pSyk (Syk phosphorylation) activation assay. C57BL/6 mice were immunised with (modified) bacterial protein fractions, and sera were analysed by ELISA. Chemically modified bacterial protein fractions contained high levels of acetylated proteins and were readily recognised by hAMPA and able to activate B cells carrying modified protein-reactive BCRs. Likely due to substantially lower levels of acetylation, endogenously acetylated protein fractions were not recognised by hAMPA or hAMPA-expressing B cells. Immunising mice with chemically modified protein fractions induced a strong cross-reactive AMPA response, targeting various modified antigens including citrullinated proteins. Acetylated bacterial proteins are recognisable by hAMPA and are capable of inducing cross-reactive AMPA in mice. These observations provide the first conceptual evidence for a novel mechanism involving the (endogenous) acetylation of the bacterial proteome, allowing a breach of tolerance to modified proteins and the formation of cross-reactive AMPA.

Keywords
Anti-Citrullinated Protein Antibodies Arthritis Rheumatoid Autoantibodies Autoimmunity
MeSH 主题词
Animals Mice Acetylation Humans B-Lymphocytes/immunology,metabolism Escherichia coli/immunology Bacterial Proteins/immunology Cross Reactions/immunology Antibody Formation/immunology Mice, Inbred C57BL Antigens, Bacterial/immunology Arthritis, Rheumatoid/immunology Receptors, Antigen, B-Cell/metabolism,immunology
Article Info
Journal
RMD open
Abbr.
RMD Open
ISSN
2056-5933
Corresponding email
Published
2024-00-22
Language
English
Country/Region
England
NLM ID
101662038
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