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Insights into the Potential of Sourdough-Related Lactic Acid Bacteria to Degrade Proteins in Wheat

Vera Fraberger, Martin Ladurner, Alexandra Nemec, Clemens Grünwald‐Gruber, Lisa Call, Rupert Hochegger, Konrad J. Domig, Stefano D’Amico

2020Microorganisms39 citationsDOIOpen Access PDF

Abstract

Sourdough processing contributes to better digestible wheat-based bakery products, especially due to the proteolytic activity of lactic acid bacteria (LAB). Therefore, sourdough-related LAB were screened for their capacity to degrade immunogenic proteins like gluten and alpha-amylase-trypsin inhibitors (ATIs). Firstly, the growth of 87 isolates was evaluated on a gluten-based medium. Further, the breakdown capacity of selected isolates was determined for gluten with a focus on gliadins by measuring acidification parameters and MALDI-TOF MS protein profiles. ATI degradation after 72 h of incubation within an ATI-based medium was investigated by means of acidification, HPLC, and competitive ELISA. All isolates exhibited the potential to degrade ATIs to a high degree, whereas the gliadin degradation capacity varied more greatly among tested LAB, with Lacticaseibacillus paracasei Lpa4 exhibiting the strongest alterations of the gliadin pattern, followed by Lactiplantibacillus plantarum Lpl5. ATI degradation capacities ranged from 52.3% to 85.0% by HPLC and 22.2% to 70.2% by ELISA, with Lacticaseibacillus paracasei Lpa4 showing superior breakdown properties. Hence, a selection of specific starter cultures can be used in sourdough processing for wheat-based bakery products with reduced gluten and ATI content and, further, better tolerated products for patients suffering from non-celiac wheat sensitivity (NCWS).

Topics & Concepts

GliadinStarterGlutenFood scienceLactic acidIncubationBacteriaChemistryDegradation (telecommunications)GluteninBiologyBiochemistryMicrobiologyTelecommunicationsGeneGeneticsComputer scienceProtein subunitCeliac Disease Research and ManagementFood composition and propertiesProbiotics and Fermented Foods