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Updated: Jul 24, 2025

Accelerated Type 1 Diabetes Induction in Mice by Adoptive Transfer of Diabetogenic CD4+ T Cells
Published on: May 6, 2013
Microbes as triggers and boosters of Type 1 Diabetes - Mediation by molecular mimicry
Jelana Repac1, Bojan Božić1, Biljana Božić Nedeljković1
1University of Belgrade, Faculty of Biology, Institute of Physiology and Biochemistry "Ivan Djaja", Belgrade, Serbia.
Aims:
Type 1 diabetes is characterized by steadily increasing incidence and largely obscured pathogenesis. Molecular mimicry is well-established as trigger for different autoimmune pathologies, but obscurely explored in the context of T1D. The presented study explores the underestimated role of molecular mimicry in T1D-etiology/progression in search for etiologic factors among human pathogens and commensals.
Methods:
A comprehensive immunoinformatics analysis of T1D-specific experimental T-cell epitopes across bacterial, fungal, and viral proteomes was performed, coupled with MHC-restricted mimotope validation and docking of most potent epitopes/mimotopes to T1D-high-risk MHCII molecules. In addition, re-analysis of the publicly available T1D-microbiota dataset was performed, including samples at the pre-T1D disease stage.
Results:
A number of bacterial pathogens/commensals were tagged as putative T1D triggers/boosters, including ubiquitous gut residents. The prediction of most likely mimicked epitopes revealed heat-shock proteins as most potent autoantigens for autoreactive T-cell priming via molecular mimicry. Docking revealed analogous interactions for predicted bacterial mimotopes and corresponding experimental epitopes. Finally, re-analysis of T1D gut microbiota datasets prompted pre-T1D as most significantly different/dysbiotic, compared to other explored categories (T1D stage/controls).
Conclusions:
Obtained results support the unrecognized role of molecular mimicry in T1D, suggesting that autoreactive T-cell priming might be the triggering factor of disease development.
Insights
Molecular mimicry may trigger Type 1 diabetes (T1D) by initiating autoreactive T-cells. Gut bacteria and heat-shock proteins are implicated as potential culprits in T1D development.
Area of Science:
- Immunology
- Microbiology
- Computational Biology
Background:
- Type 1 diabetes (T1D) incidence is rising, with unclear pathogenesis.
- Molecular mimicry is a known autoimmune trigger but understudied in T1D.
- This study investigates molecular mimicry's role in T1D etiology.
Purpose of the Study:
- To explore the role of molecular mimicry in Type 1 diabetes etiology and progression.
- To identify potential etiologic factors among human pathogens and commensals.
- To investigate the link between gut microbiota and T1D development.
Main Methods:
- Immunoinformatics analysis of T1D T-cell epitopes against microbial proteomes.
- MHC-restricted mimotope validation and molecular docking.
- Re-analysis of T1D gut microbiota datasets, including pre-T1D stages.
Main Results:
- Bacterial pathogens and commensals identified as potential T1D triggers.
- Heat-shock proteins predicted as potent autoantigens via molecular mimicry.
- Gut microbiota dysbiosis observed at the pre-T1D stage.
Conclusions:
- Results support a significant role for molecular mimicry in T1D development.
- Autoreactive T-cell priming is suggested as a key factor in T1D onset.
- Microbial triggers and gut dysbiosis are implicated in T1D pathogenesis.
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