Structural basis for HLA-DQ2-mediated presentation of gluten epitopes in celiac disease
Top Cited Papers
- 12 March 2004
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (12) , 4175-4179
- https://doi.org/10.1073/pnas.0306885101
Abstract
Celiac disease, also known as celiac sprue, is a gluten-induced autoimmune-like disorder of the small intestine, which is strongly associated with HLA-DQ2. The structure of DQ2 complexed with an immunogenic epitope from gluten, QLQPFPQPELPY, has been determined to 2.2-A resolution by x-ray crystallography. The glutamate at P6, which is formed by tissue transglutaminase-catalyzed deamidation, is an important anchor residue as it participates in an extensive hydrogen-bonding network involving Lys-beta71 of DQ2. The gluten peptide-DQ2 complex retains critical hydrogen bonds between the MHC and the peptide backbone despite the presence of many proline residues in the peptide that are unable to participate in amide-mediated hydrogen bonds. Positioning of proline residues such that they do not interfere with backbone hydrogen bonding results in a reduction in the number of registers available for gluten peptides to bind to MHC class II molecules and presumably impairs the likelihood of establishing favorable side-chain interactions. The HLA association in celiac disease can be explained by a superior ability of DQ2 to bind the biased repertoire of proline-rich gluten peptides that have survived gastrointestinal digestion and that have been deamidated by tissue transglutaminase. Finally, surface-exposed proline residues in the proteolytically resistant ligand were replaced with functionalized analogs, thereby providing a starting point for the design of orally active agents for blocking gluten-induced toxicity.Keywords
This publication has 43 references indexed in Scilit:
- Circular Dichroism and Nuclear Magnetic Resonance Spectroscopic Analysis of Immunogenic Gluten Peptides and Their AnalogsJournal of Biological Chemistry, 2002
- Refinement of Macromolecular Structures by the Maximum-Likelihood MethodActa Crystallographica Section D-Biological Crystallography, 1997
- [20] Processing of X-ray diffraction data collected in oscillation modePublished by Elsevier ,1997
- Negatively charged residues interacting with the p4 pocket confer binding specificity to DRB1*0401Arthritis & Rheumatism, 1995
- The structure of an intermediate in class II MHC maturation: CLIP bound to HLA-DR3Nature, 1995
- Function of DQ2 and DQ8 as HLA susceptibility molecules in celiac diseaseHuman Immunology, 1994
- The CCP4 suite: programs for protein crystallographyActa Crystallographica Section D-Biological Crystallography, 1994
- Production of soluble MHC class II proteins with covalently bound single peptidesNature, 1994
- Crystal structure of the human class II MHC protein HLA-DR1 complexed with an influenza virus peptideNature, 1994
- Principles of protein stability derived from protein engineering experimentsCurrent Opinion in Structural Biology, 1993