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Alpha-gliadin genes from the A, B, and D genomes of wheat contain different sets of celiac disease epitopes
BMC Genomics · 2006 · Vol. 7(1) · pp. 1–1
Teun WJM van Herpen✉Svetlana V. Goryunova(Vavilov Institute of General Genetics)J. van der SchootMakedonka Mitreva(Washington University in St. Louis)Elma M. J. SalentijnOscar VorstMartijn SchenkPeter A. van Veelen(Leiden University Medical Center)Frits Koning(Leiden University Medical Center)Loek JM van SoestB. VosmanDirk BoschR.J. Hamer(Wageningen University & Research)L. J. W. GilissenM.J.M. Smulders
Abstract
Our analysis shows that alpha-gliadin sequences from the three genomes of bread wheat form distinct groups. The four known T cell stimulatory epitopes are distributed non-randomly across the sequences, indicating that the three genomes contribute differently to epitope content. A systematic analysis of all known epitopes in gliadins and glutenins will lead to better understanding of the differences in toxicity among wheat varieties. On the basis of such insight, breeding strategies can be designed to generate less toxic varieties of wheat which may be tolerated by at least part of the CD patient population.
Celiac Disease Research and ManagementWheat and Barley Genetics and PathologyGalectins and Cancer BiologyBiologyEpitopeGenomeGeneticsGliadinGeneChromosomeProlaminGlutenStorage protein
MeSH terms
Amino Acid SequenceEpitopesCeliac DiseaseCloning, MolecularGliadinHumansMolecular Sequence DataPeptidesPhylogenyPloidiesPseudogenesSpecies SpecificityTriticumOpen Reading FramesSequence Alignment
Funding
- European Commission
Citations
597
FWCI
13.24
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References
31
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99%
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