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Structural analysis and Caco-2 cell permeability of the celiac-toxic A-gliadin peptide 31-55. | LitMetric

Structural analysis and Caco-2 cell permeability of the celiac-toxic A-gliadin peptide 31-55.

J Agric Food Chem

Istituto di Scienze dell'Alimentazione, Consiglio Nazionale delle Ricerche, Avellino, Italy.

Published: February 2013

AI Article Synopsis

  • Celiac disease is caused by the ingestion of certain proteins in wheat and is characterized by a chronic intestinal immune response.
  • Synthetic peptides P31-43 and P31-49 from A-gliadin are used to study this immune response and are found within a larger peptide (P31-55) that resists breakdown during digestion.
  • Research shows that P31-55 can pass through intestinal cell layers and that whole gliadin extracts increase its absorption; different conformations of P31-55 may activate immune responses, suggesting its significance in celiac disease.

Article Abstract

Celiac disease is a chronic enteropathy caused by the ingestion of wheat gliadin and other cereal prolamines. The synthetic peptides 31-43 (P31-43) and 31-49 (P31-49) from A-gliadin are considered to be model peptides for studying innate immunity in celiac disease. Our previous study demonstrated that P31-43 and P31-49 are encrypted within peptide 31-55 (P31-55), which is naturally released from gastropancreatic digestion and is not susceptible to hydrolysis by brush border membrane enzymes. Here, we analyzed the permeability of P31-55 through the epithelial cell layer of confluent Caco-2 cells using high-performance liquid chromatography, mass spectrometry, and fluorescence-activated cell sorting. Twenty-three percent of the P31-55 added to the apical chamber was transported to the basolateral chamber after 4 h of incubation without being degraded by hydrolysis. Treatment of Caco-2 cells with whole gliadin digests extracted from a common wheat cultivar increased the epithelial P31-55 translocation by approximately 35%. Moreover, we observed an atypical chromatographic profile consisting of a double peak. Chromatography using different column temperatures and circular dichroism highlighted the presence of more conformational structures around the amide bond of the two adjacent prolines 38 and 39. These findings confirm that P31-55 is gastrointestinally resistant and is permeable across a Caco-2 monolayer. Moreover, we hypothesize that the various conformations of P31-55 may play a role in the activation of innate immunity.

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Source
http://dx.doi.org/10.1021/jf3045523DOI Listing

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