Wheat gluten deamidation: structure, allergenicity and its application in hypoallergenic noodles

Author:

Liu Mingxi1,Dai Shuhan1,Yin Lijun1,Huang Zhijie1,Jia Xin1ORCID

Affiliation:

1. College of Food Science and Nutritional Engineering, Beijing Key Laboratory of Functional Food from Plant Resources, China Agricultural University Beijing China

Abstract

AbstractBACKGROUNDWheat gluten (WG) containing gliadin and glutenin are considered the main allergens in wheat allergy as a result of their glutamine‐rich peptides. Deamidation is a viable and efficient approach for protein modifications converting glutamine into glutamic acid, which may have the potential for allergenicity reduction of WG.RESULTSDeamidation by citric acid was performed to investigate the effects on structure, allergenicity and noodle textural properties of wheat gluten (WG). WG was heated at 100 °C in 1 m citric acid to yield deamidated WG with degrees of deamidation (DD) ranging from DWG‐25 (25% DD) to DWG‐70 (70% DD). Fourier‐transform infrared and intrinsic fluorescence spectroscopy results suggested the unfolding of WG structure during deamidation, and sodium dodecyl sulphate‐polyacrylamide gel electrophoresis showed molecular weight shifts at the 35–63 kDa region, suggesting that the deamidation mainly occurred on low molecular weight glutenin subunits and γ‐ gliadin of the WG. An enzyme‐linked immunosorbent assay of deamidated WG revealed a decrease in absorbance and immunoblotting indicated that the intensities of protein bands at 35–63 kDa decreased, which suggested that deamidation of WG might have caused a greater loss of epitopes than the generation of new epitopes caused by unfolding of WG, and thereby reduction of the immunodominant immunoglobulin E binding capacity, ultimately leading to the decrease in allergenicity. DWG‐25 was used in the preparation of recombinant hypoallergenic noodles, and the hardness, elasticity, chewiness and gumminess were improved significantly by the addition of azodicarbonamide.CONCLUSIONThe present shows the potential for deamidation of the WG products used in novel hypoallergenic food development. © 2023 Society of Chemical Industry.

Funder

National Key Research and Development Program of China

Publisher

Wiley

Subject

Nutrition and Dietetics,Agronomy and Crop Science,Food Science,Biotechnology

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