Institute of Nutritional Science, University of Potsdam, Nuthetal, Germany.
J Agric Food Chem. 2013 Jul 17;61(28):6911-20. doi: 10.1021/jf402221m. Epub 2013 Jul 2.
A suitable vehicle for integration of bioactive plant constituents is proposed. It involves modification of proteins using phenolics and applying these for protection of labile constituents. It dissects the noncovalent and covalent interactions of β-lactoglobulin with coffee-specific phenolics. Alkaline and polyphenol oxidase modulated covalent reactions were compared. Tryptic digestion combined with MALDI-TOF-MS provided tentative allocation of the modification type and site in the protein, and an in silico modeling of modified β-lactoglobulin is proposed. The modification delivers proteins with enhanced antioxidative properties. Changed structural properties and differences in solubility, surface hydrophobicity, and emulsification were observed. The polyphenol oxidase modulated reaction provides a modified β-lactoglobulin with a high antioxidative power, is thermally more stable, requires less energy to unfold, and, when emulsified with lutein esters, exhibits their higher stability against UV light. Thus, adaptation of this modification provides an innovative approach for functionalizing proteins and their uses in the food industry.
提出了一种将生物活性植物成分整合到合适载体中的方法。该方法涉及使用酚类物质修饰蛋白质,并将其应用于保护不稳定成分。该方法剖析了β-乳球蛋白与咖啡特异性酚类物质的非共价和共价相互作用。比较了碱性和多酚氧化酶调节的共价反应。胰蛋白酶消化与 MALDI-TOF-MS 结合提供了修饰类型和蛋白质中修饰部位的暂定分配,并且提出了修饰β-乳球蛋白的计算建模。修饰赋予蛋白质增强的抗氧化特性。观察到结构特性的变化以及溶解度、表面疏水性和乳化性的差异。多酚氧化酶调节的反应提供了具有高抗氧化能力的修饰β-乳球蛋白,其热稳定性更高,展开所需能量更少,并且在与叶黄素酯乳化时,表现出对紫外光更高的稳定性。因此,这种修饰的适应性为蛋白质的功能化及其在食品工业中的应用提供了一种创新方法。