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Published on: August 1, 2014
Discovery of low-affinity preproinsulin epitopes and detection of autoreactive CD8 T-cells using combinatorial MHC
Wendy W Unger1, Jurjen Velthuis, Joana R F Abreu
1Department of Immunohematology & Blood Transfusion, Leiden University Medical Center, 2300 RC Leiden, The Netherlands.
Abstract:
Autoreactive cytotoxic CD8 T-cells (CTLs) play a key pathogenic role in the destruction of insulin-producing beta-cells resulting in type 1 diabetes. However, knowledge regarding their targets is limited, restricting the ability to monitor the course of the disease and immune interventions. In a multi-step discovery process to identify novel CTL epitopes in human preproinsulin (PPI), PPI was digested with purified human proteasomes, and resulting COOH-fragments aligned with algorithm-predicted HLA-binding peptides to yield nine potential HLA-A1, -A2, -A3 or -B7-restricted candidates. An UV-exchange method allowed the generation of a repertoire of multimers including low-affinity HLA-binding peptides. These were labeled with quantum dot-fluorochromes and encoded in a combinatorial fashion, allowing parallel and sensitive detection of specific, low-avidity T-cells. Significantly increased frequencies of T-cells against four novel PPI epitopes (PPI(4-13)/B7, PPI(29-38)/A2, PPI(76-84)/A3 and PPI(79-88)/A3) were detected in stored blood of patients with recent onset diabetes but not in controls. Changes in frequencies of circulating CD8 T-cells against these novel epitopes were detected in blood of islet graft recipients at different time points after transplantation, which correlated with clinical outcome. In conclusion, our novel strategy involving a sensitive multiplex detection technology and requiring minimal volumes of stored blood represents a major improvement in the direct ex-vivo characterization and enumeration of immune cells in the pathogenesis of type 1 diabetes.
Insights
Researchers identified new targets of autoreactive CD8 T-cells (CTLs) in type 1 diabetes. This discovery improves monitoring disease progression and developing immune interventions for type 1 diabetes.
Area of Science:
- Immunology
- Endocrinology
- Molecular Biology
Background:
- Autoreactive cytotoxic CD8 T-cells (CTLs) are implicated in type 1 diabetes pathogenesis by destroying insulin-producing beta-cells.
- Limited knowledge of specific CTL targets hinders disease monitoring and therapeutic intervention development.
Purpose of the Study:
- To identify novel cytotoxic T-lymphocyte (CTL) epitopes within human preproinsulin (PPI).
- To develop a sensitive method for detecting and enumerating specific T-cells for improved type 1 diabetes research.
Main Methods:
- Human proteasomes digested PPI; HLA-binding peptides were predicted and selected.
- A UV-exchange method generated multimers for detecting low-affinity HLA-binding peptides.
- Quantum dot-fluorochromes and combinatorial encoding enabled sensitive, parallel T-cell detection.
Main Results:
- Four novel PPI epitopes (PPI(4-13)/B7, PPI(29-38)/A2, PPI(76-84)/A3, PPI(79-88)/A3) were identified.
- Increased T-cell frequencies against these epitopes were found in recent-onset type 1 diabetes patients, not controls.
- Circulating CD8 T-cell frequencies against novel epitopes in islet graft recipients correlated with clinical outcomes.
Conclusions:
- A novel strategy combining multiplex detection technology and minimal blood volumes enhances ex-vivo characterization of immune cells in type 1 diabetes.
- This approach offers significant improvements for understanding type 1 diabetes pathogenesis and immune cell enumeration.
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