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September 27, 2002Science1,587 citations

Structural Basis for Gluten Intolerance in Celiac Sprue

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LSLu ShanØMØyvind MolbergIPIsabelle Parrot

Key Points

  • Investigate the structural basis of gluten intolerance and identify key peptides that trigger Celiac Sprue.
  • In vitro and in vivo studies conducted in rats and humans
  • Assessment of peptide interactions with tissue transglutaminase
  • Identification of homologs in food grains that affect Celiac Sprue patients
  • The 33-mer peptide induced T cell responses in all tested Celiac Sprue patients.
  • Peptide demonstrated high stability against digestion by human proteases.
  • Exposure to prolyl endopeptidase showed capacity to detoxify the harmful peptide.

Abstract

Celiac Sprue, a widely prevalent autoimmune disease of the small intestine, is induced in genetically susceptible individuals by exposure to dietary gluten. A 33-mer peptide was identified that has several characteristics suggesting it is the primary initiator of the inflammatory response to gluten in Celiac Sprue patients. In vitro and in vivo studies in rats and humans demonstrated that it is stable toward breakdown by all gastric, pancreatic, and intestinal brush-border membrane proteases. The peptide reacted with tissue transglutaminase, the major autoantigen in Celiac Sprue, with substantially greater selectivity than known natural substrates of this extracellular enzyme. It was a potent inducer of gut-derived human T cell lines from 14 of 14 Celiac Sprue patients. Homologs of this peptide were found in all food grains that are toxic to Celiac Sprue patients but are absent from all nontoxic food grains. The peptide could be detoxified in in vitro and in vivo assays by exposure to a bacterial prolyl endopeptidase, suggesting a strategy for oral peptidase supplement therapy for Celiac Sprue.

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Cite This Study

Shan et al. (2002) studied this question.

synapsesocial.com/papers/69dd5d6cfb7610310c10280chttps://doi.org/10.1126/science.1074129
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