化学
面筋
过氧化氢
谷蛋白
硫醇
食品科学
二硫键
小麦面筋
水解
生物化学
蛋白质亚单位
基因
作者
Guang Liu,Zhiming Wang,Nian Du,Yan Zhang,Zhencheng Wei,Xiaojun Tang,Lei Zhao,Chao Li,Yuanyuan Deng,Mingwei Zhang
标识
DOI:10.1021/acs.jafc.2c01652
摘要
Recombinant rice quiescin sulfhydryl oxidase (rQSOX) has the potential to improve the flour processing quality, but the mechanisms remain unclear. The effects of rQSOX on bread quality, dough rheology, and gluten structure and composition, with glucose oxidase as a positive control, were investigated. rQSOX addition could improve the dough processing quality, as proved by enhanced viscoelastic properties of dough as well as a softer crumb, higher specific volume, and lower moisture loss of bread. These beneficial effects were attributed to gluten protein polymerization and gluten network strengthening, evidenced by the improved concentration of SDS-insoluble gluten and formation of large gluten aggregates and the increased α-helix and β-turn conformation. Furthermore, decreased free sulfhydryl and increased dityrosine in gluten as well as improved H2O2 content in dough suggested that the rQSOX dough strengthening mechanism was mainly based on the formation of disulfide bonds and dityrosine cross-links in gluten by both thiol/disulfide direct exchange and hydrogen peroxide indirect oxidation pathways.
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