4z7v Citations

Determinants of gliadin-specific T cell selection in celiac disease.

Abstract

In HLA-DQ8-associated celiac disease (CD), the pathogenic T cell response is directed toward an immunodominant α-gliadin-derived peptide (DQ8-glia-α1). However, our knowledge of TCR gene usage within the primary intestinal tissue of HLA-DQ8 (+) CD patients is limited. We identified two populations of HLA-DQ8-glia-α1 tetramer(+) CD4(+) T cells that were essentially undetectable in biopsy samples from patients on a gluten-free diet but expanded rapidly and specifically after antigenic stimulation. Distinguished by expression of TRBV9, both T cell populations displayed biased clonotypic repertoires and reacted similarly against HLA-DQ8-glia-α1. In particular, TRBV9 paired most often with TRAV26-2, whereas the majority of TRBV9(-) TCRs used TRBV6-1 with no clear TRAV gene preference. Strikingly, both tetramer(+)/TRBV9(+) and tetramer(+)/TRBV9(-) T cells possessed a non-germline-encoded arginine residue in their CDR3α and CDR3β loops, respectively. Comparison of the crystal structures of three TRBV9(+) TCRs and a TRBV9(-) TCR revealed that, as a result of distinct TCR docking modes, the HLA-DQ8-glia-α1 contacts mediated by the CDR3-encoded arginine were almost identical between TRBV9(+) and TRBV9(-) TCRs. In all cases, this interaction centered on two hydrogen bonds with a specific serine residue in the bound peptide. Replacement of serine with alanine at this position abrogated TRBV9(+) and TRBV9(-) clonal T cell proliferation in response to HLA-DQ8-glia-α1. Gluten-specific memory CD4(+) T cells with structurally and functionally conserved TCRs therefore predominate in the disease-affected tissue of patients with HLA-DQ8-mediated CD.

Reviews - 4z7v mentioned but not cited (2)

  1. Emerging Concepts in TCR Specificity: Rationalizing and (Maybe) Predicting Outcomes. Singh NK, Riley TP, Baker SCB, Borrman T, Weng Z, Baker BM. J Immunol 199 2203-2213 (2017)
  2. The Many Faces of CD4+ T Cells: Immunological and Structural Characteristics. Chatzileontiadou DSM, Sloane H, Nguyen AT, Gras S, Grant EJ. Int J Mol Sci 22 E73 (2020)

Articles - 4z7v mentioned but not cited (4)



Reviews citing this publication (10)

  1. Understanding the drivers of MHC restriction of T cell receptors. La Gruta NL, Gras S, Daley SR, Thomas PG, Rossjohn J. Nat Rev Immunol 18 467-478 (2018)
  2. T Cells in Celiac Disease. Jabri B, Sollid LM. J Immunol 198 3005-3014 (2017)
  3. The roles of MHC class II genes and post-translational modification in celiac disease. Sollid LM. Immunogenetics 69 605-616 (2017)
  4. Coeliac disease: a unique model for investigating broken tolerance in autoimmunity. Hardy MY, Tye-Din JA. Clin Transl Immunology 5 e112 (2016)
  5. CRISPR/Cas9 Gene Editing of Gluten in Wheat to Reduce Gluten Content and Exposure-Reviewing Methods to Screen for Coeliac Safety. Jouanin A, Gilissen LJWJ, Schaart JG, Leigh FJ, Cockram J, Wallington EJ, Boyd LA, van den Broeck HC, van der Meer IM, America AHP, Visser RGF, Smulders MJM. Front Nutr 7 51 (2020)
  6. Epigenetics in Paediatric Gastroenterology, Hepatology, and Nutrition: Present Trends and Future Perspectives. Zilbauer M, Zellos A, Heuschkel R, Gasparetto M, Kraiczy J, Postberg J, Greco L, Auricchio R, Galatola M, Embleton N, Wirth S, Jenke A. J Pediatr Gastroenterol Nutr 62 521-529 (2016)
  7. Beyond the HLA Genes in Gluten-Related Disorders. Sallese M, Lopetuso LR, Efthymakis K, Neri M. Front Nutr 7 575844 (2020)
  8. The Evolving Landscape of Biomarkers in Celiac Disease: Leading the Way to Clinical Development. Smithson G, Siegelman J, Oki T, Maxwell JR, Leffler DA. Front Immunol 12 665756 (2021)
  9. Single-cell approaches to dissect adaptive immune responses involved in autoimmunity: the case of celiac disease. Lindeman I, Sollid LM. Mucosal Immunol 15 51-63 (2022)
  10. An Interpretable Classification Model Using Gluten-Specific TCR Sequences Shows Diagnostic Potential in Coeliac Disease. Fowler A, FitzPatrick M, Shanmugarasa A, Ibrahim ASF, Kockelbergh H, Yang HC, Williams-Walker A, Luu Hoang KN, Evans S, Provine N, Klenerman P, Soilleux EJ. Biomolecules 13 1707 (2023)

Articles citing this publication (20)