HLA Class I Epitope Discovery in Type 1 Diabetes
- 1 October 2006
- journal article
- Published by Wiley in Annals of the New York Academy of Sciences
- Vol. 1079 (1) , 190-197
- https://doi.org/10.1196/annals.1375.030
Abstract
Abstract: Type 1 diabetes mellitus (T1DM) results from the destruction of β cells by autoantigen‐specific T cells. In the non‐obese diabetic (NOD) mouse model, CD8+ T cells play an essential role in both the initial triggering of insulitis and its destructive phase, and proinsulin (PI) is one of the dominant target antigens (Ags). However, little is known about the beta cell epitopes presented by HLA class I molecules and recognized by human CD8+ T cells. We and other groups recently applied reverse immunology approaches to identify HLA class I‐restricted PI epitopes. To establish an inventory of potential naturally processed epitopes, whole human PI or the transitional region between the B‐chain and C‐peptide were digested with purified proteasome complexes. By combining proteasome digestion data with epitope prediction algorithms, candidate epitopes restricted by HLA‐A2.1 and other HLA class I molecules were identified. We validated immunogenicity and natural processing of the identified PI epitopes in HLA‐A2.1‐transgenic mice, while others demonstrated recognition of multiple PI epitopes by CD8+ T cells from T1DM and healthy subjects in the context of different HLA class I molecules. These results demonstrate the power of reverse immunology strategies for epitope discovery. DNA vaccination of HLA‐transgenic mice may be another rapid and efficient reverse immunology approach to map additional epitopes derived from other T1DM Ags, such as IA‐2 and glutamic acid decarboxylase 65 (GAD 65). Transfer of this information to Elispot‐ and MHC tetramer‐based assay formats should allow to reliably detect and characterize autoreactive CD8+ T cell responses in T1DM, and may open new avenues for early T1DM diagnosis and immune intervention.Keywords
This publication has 25 references indexed in Scilit:
- Gene-Gun Biolistic Immunization Encoding Glutamic Acid Decarboxylase: A Model for Studying Langerhans Cell Abnormalities and Mimicry in the Nonobese Diabetic MouseAnnals of the New York Academy of Sciences, 2005
- Calreticulin Promotes Folding of Functional Human Leukocyte Antigen Class I Molecules in VitroJournal of Biological Chemistry, 2004
- DNA vaccination encoding glutamic acid decarboxylase can enhance insulitis and diabetes in correlation with a specific Th2/3 CD4 T cell response in non-obese diabetic miceClinical and Experimental Immunology, 2004
- MHC Class II tetramers and the pursuit of antigen-specific T cells: define, deviate, deleteClinical Immunology, 2004
- Autoreactive CD8 T Cells in Organ-Specific Autoimmunity: Emerging Targets for Therapeutic InterventionImmunity, 2002
- Cytotoxic T Cells to an Epitope in the Islet Autoantigen IA-2 Are Not Disease-SpecificClinical Immunology, 2001
- A New Look at MHC and Autoimmune DiseaseScience, 1999
- HLA-A2.1–restricted Education and Cytolytic Activity of CD8+ T Lymphocytes from β2 Microglobulin (β2m) HLA-A2.1 Monochain Transgenic H-2Db β2m Double Knockout MiceThe Journal of Experimental Medicine, 1997
- CD8 T cell clones from young nonobese diabetic (NOD) islets can transfer rapid onset of diabetes in NOD mice in the absence of CD4 cells.The Journal of Experimental Medicine, 1996
- Cytotoxic T cells specific for glutamic acid decarboxylase in autoimmune diabetes.The Journal of Experimental Medicine, 1995