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Intestinal digestive resistance of immunodominant gliadin peptides

Abstract

Two recently identified immunodominant epitopes from alpha-gliadin account for most of the stimulatory activity of dietary gluten on intestinal and peripheral T lymphocytes in patients with celiac sprue. The proteolytic kinetics of peptides containing these epitopes were analyzed in vitro using soluble proteases from bovine and porcine pancreas and brush-border membrane vesicles from adult rat intestine. We showed that these proline-glutamine-rich epitopes are exceptionally resistant to enzymatic processing. Moreover, as estimated from the residual peptide structure and confirmed by exogenous peptidase supplementation, dipeptidyl peptidase IV and dipeptidyl carboxypeptidase I were identified as the rate-limiting enzymes in the digestive breakdown of these peptides. A similar conclusion also emerged from analogous studies with brush-border membrane from a human intestinal biopsy. Supplementation of rat brush-border membrane with trace quantities of a bacterial prolyl endopeptidase led to the rapid destruction of the immunodominant epitopes in these peptides. These results suggest a possible enzyme therapy strategy for celiac sprue, for which the only current therapeutic option is strict exclusion of gluten-containing food.

Peptidase Inhibition and AnalysisCeliac Disease Research and ManagementFood Allergy and Anaphylaxis ResearchEpitopeGliadinDipeptidyl peptidaseBrush borderGlutenBiochemistryCarboxypeptidaseProteasesExopeptidaseChemistry

MeSH terms

Prolyl OligopeptidasesAmino Acid SequenceAnimalsEpitopesCattleDigestionFemaleGliadinHumansIntestinal MucosaIntestine, SmallMicrovilliPancreasEndopeptidasesPeptides
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Intestinal digestive resistance of immunodominant gliadin peptides · Scinovex