Publication:
Celiac Immunogenic Potential of α-Gliadin Epitope Variants from Triticum and Aegilops Species.

dc.contributor.authorRuiz-Carnicer, Ángela
dc.contributor.authorComino, Isabel
dc.contributor.authorSegura, Verónica
dc.contributor.authorOzuna, Carmen V
dc.contributor.authorMoreno, María de Lourdes
dc.contributor.authorLópez-Casado, Miguel Ángel
dc.contributor.authorTorres, María Isabel
dc.contributor.authorBarro, Francisco
dc.contributor.authorSousa, Carolina
dc.date.accessioned2023-01-25T10:28:49Z
dc.date.available2023-01-25T10:28:49Z
dc.date.issued2019-01-22
dc.description.abstractThe high global demand of wheat and its subsequent consumption arise from the physicochemical properties of bread dough and its contribution to the protein intake in the human diet. Gluten is the main structural complex of wheat proteins and subjects affected by celiac disease (CD) cannot tolerate gluten protein. Within gluten proteins, α-gliadins constitute the most immunogenic fraction since they contain the main T-cell stimulating epitopes (DQ2.5-glia-α1, DQ2.5-glia-α2, and DQ2.5-glia-α3). In this work, the celiac immunotoxic potential of α-gliadins was studied within Triticeae: diploid, tetraploid, and hexaploid species. The abundance and immunostimulatory capacity of CD canonical epitopes and variants (with one or two mismatches) in all α-gliadin sequences were determined. The results showed that the canonical epitopes DQ2.5-glia-α1 and DQ2.5-glia-α3 were more frequent than DQ2.5-glia-α2. A higher abundance of canonical DQ2.5-glia-α1 epitope was found to be associated with genomes of the BBAADD, AA, and DD types; however, the abundance of DQ2.5-glia-α3 epitope variants was very high in BBAADD and BBAA wheat despite their low abundance in the canonical epitope. The most abundant substitution was that of proline to serine, which was disposed mainly on the three canonical DQ2.5 domains on position 8. Interestingly, our results demonstrated that the natural introduction of Q to H at any position eliminates the toxicity of the three T-cell epitopes in the α-gliadins. The results provided a rational approach for the introduction of natural amino acid substitutions to eliminate the toxicity of three T-cell epitopes, while maintaining the technological properties of commercial wheats.
dc.identifier.doi10.3390/nu11020220
dc.identifier.essn2072-6643
dc.identifier.pmcPMC6413208
dc.identifier.pmid30678169
dc.identifier.pubmedURLhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413208/pdf
dc.identifier.unpaywallURLhttps://www.mdpi.com/2072-6643/11/2/220/pdf?version=1548152062
dc.identifier.urihttp://hdl.handle.net/10668/13456
dc.issue.number2
dc.journal.titleNutrients
dc.journal.titleabbreviationNutrients
dc.language.isoen
dc.organizationHospital Universitario Virgen de las Nieves
dc.pubmedtypeJournal Article
dc.rightsAttribution 4.0 International
dc.rights.accessRightsopen access
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subject33-mer
dc.subjectDQ2.5-glia-α1
dc.subjectDQ2.5-glia-α2
dc.subjectDQ2.5-glia-α3 epitopes
dc.subjectceliac disease
dc.subjectwheat species
dc.subjectα-gliadin
dc.subject.meshAegilops
dc.subject.meshAmino Acid Sequence
dc.subject.meshCeliac Disease
dc.subject.meshCell Proliferation
dc.subject.meshChild
dc.subject.meshEpitopes
dc.subject.meshGenetic Variation
dc.subject.meshGliadin
dc.subject.meshHumans
dc.subject.meshLeukocytes, Mononuclear
dc.subject.meshPloidies
dc.subject.meshT-Lymphocytes
dc.subject.meshTriticum
dc.titleCeliac Immunogenic Potential of α-Gliadin Epitope Variants from Triticum and Aegilops Species.
dc.typeresearch article
dc.type.hasVersionVoR
dc.volume.number11
dspace.entity.typePublication

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