Prediction of desmoglein-3 peptides reveals multiple shared T-cell epitopes in HLA DR4- and DR6- associated Pemphigus vulgaris

Author:

Tong Joo Chuan,Tan Tin Wee,Sinha Animesh A,Ranganathan Shoba

Abstract

Abstract Background Pemphigus vulgaris (PV) is a severe autoimmune blistering skin disorder that is strongly associated with major histocompatibility complex class II alleles DRB1*0402 and DQB1*0503. The target antigen of PV, desmoglein 3 (Dsg3), is crucial for initiating T-cell response in early disease. Although a number of T-cell specificities within Dsg3 have been reported, the number is limited and the role of T-cells in the pathogenesis of PV remains poorly understood. We report here a structure-based model for the prediction of peptide binding to DRB1*0402 and DQB1*0503. The scoring functions were rigorously trained, tested and validated using experimentally verified peptide sequences. Results High predictivity is obtained for both DRB1*0402 (r 2 = 0.90, s = 1.20 kJ/mol, q 2 = 0.82, s press = 1.61 kJ/mol) and DQB1*0503 (r 2 = 0.95, s = 1.20 kJ/mol, q 2 = 0.75, s press = 2.15 kJ/mol) models, compared to experimental data. We investigated the binding patterns of Dsg3 peptides and illustrate the existence of multiple immunodominant epitopes that may be responsible for both disease initiation and propagation in PV. Further analysis reveals that DRB1*0402 and DQB1*0503 may share similar specificities by binding peptides at different binding registers, thus providing a molecular mechanism for the dual HLA association observed in PV. Conclusion Collectively, the results of this study provide interesting new insights into the pathology of PV. This is the first report illustrating high-level of cross-reactivity between both PV-implicated alleles, DRB1*0402 and DQB1*0503, as well as the existence of a potentially large number of T-cell epitopes throughout the entire Dsg3 extracellular domain (ECD) and transmembrane region. Our results reveal that DR4 and DR6 PV may initiate in the ECD and transmembrane region respectively, with implications for immunotherapeutic strategies for the treatment of this autoimmune disease.

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computer Science Applications,Molecular Biology,Biochemistry,Structural Biology

Cited by 20 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Detection of rare autoreactive T cell subsets in patients with pemphigus vulgaris;Frontiers in Immunology;2022-09-20

2. The emerging role of T cells in pemphigus vulgaris: a systematic review;Clinical and Experimental Medicine;2022-08-04

3. The Immunogenetics of Autoimmune Blistering Diseases;The Immunogenetics of Dermatologic Diseases;2022

4. Detection of autoreactive CD4+ T cells by MHC class II multimers in HLA-linked human autoimmune diseases;Journal of Clinical Investigation;2021-05-03

5. Autoreactive T cells in pemphigus: perpetrator and target;Italian Journal of Dermatology and Venereology;2021-05

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