Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/16715
Title: Engineering outer membrane vesicles (OMVs) carrying OmpA from S. Typhimurium for targeted modulation of human B-cell function through AID expression and class switch recombination
Authors: Chaudhari, Rahul
Dasgupta, Mallar
Nigam, Deveish
Kodgire, Prashant
Keywords: Activation-induced Cytidine Deaminase (aid);Class Switch Recombination (csr);Outer Membrane Protein Ompa;Outer Membrane Vesicles (omvs);Salmonella Enterica Typhimurium;Toll-like Receptor 2 (tlr-2);Activation Induced Cytidine Deaminase;Toll Like Receptor 2;Amicon Ultra Centrifugal Filter;Fv1200mpe;Graphpad Prism 8.0 Software;Image Quant Gel Doc System;Imagej Software;Nanodrop Spectrophotometer;Quantstudio-3;Sybr Green Qpcr Master Mix;Tensor 27 Ftir Spectrometer;Verso Cdna Synthesis Kit;Zeiss Supra55;Activation Induced Cytidine Deaminase;Outer Membrane Protein A;Toll Like Receptor 2;Antibiotic Resistance;Article;Cell Function;Chromatin Immunoprecipitation;Confocal Microscopy;Cytotoxicity;Enzyme Linked Immunosorbent Assay;Flow Cytometry;Gene Expression;Human;Human B Cell Function;Human Cell;Immune Response;Immunoprecipitation;Innate Immunity;Membrane Vesicle;Nonhuman;Outer Membrane Vesicle;Phagocytosis;Protein Expression;Salmonella Enterica Serovar Typhimurium
Issue Date: 2025
Publisher: Academic Press
Citation: Chaudhari, R., Dasgupta, M., Nigam, D., & Kodgire, P. (2025). Engineering outer membrane vesicles (OMVs) carrying OmpA from S. Typhimurium for targeted modulation of human B-cell function through AID expression and class switch recombination. Microbial Pathogenesis, 207. Scopus. https://doi.org/10.1016/j.micpath.2025.107918
Abstract: Salmonella enterica serovar Typhimurium is a Gram-negative bacterium recognized for its ability to invade and develop antimicrobial resistance. Among its virulence factors are outer membrane vesicles (OMVs), which play a significant role in modulating host immune responses by delivering components such as outer membrane proteins (OMPs). In this study, we engineered OMVs carrying OmpA (OmpA-OMVs) and investigated their effects on B-cell modulation. OMVs were isolated from Escherichia coli BL21(DE3) expressing recombinant OmpA and characterized using biophysical techniques. Furthermore, Raji human B-cells were stimulated with OmpA-OMVs, and their immunomodulatory effects were evaluated using RT-qPCR, western blotting, immunofluorescence, and chromatin immunoprecipitation assays. Importantly, OmpA-OMVs significantly upregulated Toll-like receptor 2 (TLR2) expression and activated NF-κB signaling in B-cells, leading to enhanced expression of activation-induced cytidine deaminase (AID), a key enzyme required for class switch recombination (CSR). This was accompanied by increased expression of AID transcriptional activators such as cMYC, PAX5, STAT6, and SMAD3 and decreased expression of the repressor cMYB. Chromatin immunoprecipitation analysis showed increased cMYC occupancy at the nuclear level over time. Functionally, OmpA-OMVs promoted IgA expression, indicating active isotype switching. These findings suggest that OmpA-OMVs enhance the immunogenic properties of OmpA and improve vesicular-mediated delivery, boosting immune activation compared to purified OmpA protein alone. Collectively, these findings support the potential use of OmpA-OMVs in targeted immunotherapies or vaccines against Salmonella infections. © 2025 Elsevier B.V., All rights reserved.
URI: https://dx.doi.org/10.1016/j.micpath.2025.107918
https://dspace.iiti.ac.in:8080/jspui/handle/123456789/16715
ISSN: 0882-4010
1096-1208
Type of Material: Journal Article
Appears in Collections:Department of Biosciences and Biomedical Engineering

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