化学
硫黄素
酶
生物物理学
生物化学
纤维
淀粉样蛋白(真菌学)
圆二色性
疏水效应
酪蛋白
肽
体外
胶束
两亲性
抑制性突触后电位
蛋白质聚集
荧光
胰淀素
费斯特共振能量转移
离子强度
氢键
构象变化
立体化学
原籍国
非共价相互作用
纤颤
共价键
蛋白质折叠
蛋白质结构
淀粉
作者
Mengqing Li,Siyu Zhang,Yan Liu,Fangwei Ye,Jifan Zhang,Chengcheng Liu,Shuang-kui Du,Xuebo Liu,Lijun Sun
标识
DOI:10.1021/acs.jafc.5c09029
摘要
Casein, owing to its amphiphilic and self-assembling properties, can transform into amyloid fibrils (CNAF), which exhibit distinct bioactivity. In this study, it was innovatively found that the fibrillation of casein significantly enhances its inhibitory activity against starch-hydrolyzing enzymes. Specifically, the process followed an S-shaped thioflavin T fluorescence kinetic curve and involved conformational transition from its native disordered state to β-sheet-rich structures driven by hydrogen bonding, π-π stacking, and electrostatic interactions. Furthermore, the elongated fibrillar morphology of CNAF, with a high aspect ratio and large specific surface area, facilitated multivalent binding to enzyme surfaces. This interaction resembled a "grape-on-a-vine" arrangement and contributed to enhanced inhibition. CNAF exhibited mixed-type inhibition toward α-amylase and competitive inhibition toward α-glucosidase, indicating structure-specific enzyme inhibition mechanisms that collectively reduced starch hydrolysis. Consequently, CNAF effectively delayed in vitro starch digestion by modulating enzyme activity, indicating its potential as a functional ingredient for postprandial glycemic regulation.
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