糖基化
化学
酪蛋白
生物化学
糖基化
圆二色性
抗氧化剂
还原糖
酶
阿玛多利重排
食品科学
糖
受体
作者
Reza Yousefi,Leila Ferdowsi,Zohreh Tavaf,Tanaz Sadeghian,Ali Mohammad Tamaddon,Mozhgan Moghtaderi,Zahra Pourpak
出处
期刊:Protein and Peptide Letters
[Bentham Science Publishers]
日期:2016-12-13
卷期号:24 (1): 46-55
被引量:11
标识
DOI:10.2174/0929866524666161121144025
摘要
Milk has a potent reducing environment with an important quantity of sugar levels. In the current study β-casein was glycated in the presence of D-glucose and sodium cyanoborohydride as a reducing agent. Then, the reduced glucitol adduct of β-casein was used for the structural and functional analyses using different spectroscopic techniques. The results of fluorescence and far ultraviolet circular dichroism assessments suggest important structural alteration upon non-enzymatic glycation of β-casein. In addition, the chaperone activity, micellization properties and antioxidant activity of this protein were altered upon glucose modification. Also, as a result of reduced glycation, the allergenicity profile of this protein remained largely unchanged. Additional to its energetic and nutritional values, β-casein has important functional properties. The native structure of this protein is important to perform accurately its biological functions. Non-enzymatic glycation under reducing state was capable to alter both structural and functional aspects of β-casein. Due to effective reducing environment and significant quantity of reducing sugar of human milk, similar structural and functional alterations are most likely to occur upon reducing glycation of β-casein in vivo. Also, these changes might be even intensified during chronic hyperglycemia in diabetic mothers.
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