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Structural Features of Hydrolyzable Tannins Determine Their Ability to Form Insoluble Complexes with Bovine Serum Albumin

机译:水解单宁的结构特征确定了它们与牛血清白蛋白形成不溶性复合物的能力

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摘要

The ability of 32 purified and characterized hydrolyzable tannins to form insoluble complexes with model protein bovine serum albumin was investigated with a turbidimetric 96-well plate reader method. The results showed a clear relationship between the hydrolyzable tannin structure and the intensity of haze that formed during the tannin-protein complexation. In addition to molecular weight, structural features such as number of galloyl groups, degree of oxidative coupling between the galloyls, positional isomerism, and cyclic vs acyclic glucose core were the major structural features that affected the ability of the monomeric hydrolyzable tannins to form insoluble complexes with bovine serum albumin. While oligomers were superior to monomers in their capability to precipitate the model protein, their activity depended less on the functional groups, but mostly on their size and overall flexibility. These results allowed us to construct an equation that predicted the protein precipitation capacity of the studied hydrolyzable tannins with high accuracy.
机译:采用浊度96孔板读取器方法研究了32纯化和表征水解单宁与模型蛋白牛血清白蛋白形成不溶性复合物的能力。结果表明,在单宁 - 蛋白络合过程中形成的可水解鞣管结构和雾度强度之间的关系。除了分子量之外,诸如戈尔妇女数量的结构特征,戈尔妇在核酰基,位置异构性和环状Vs无循环葡萄糖核之间的氧化偶联程度是影响单体可水解单宁形成不溶性复合物的主要结构特征用牛血清白蛋白。虽然低聚物在其能力中优于单体以沉淀模型蛋白质,但它们的活性依赖于官能团,但主要是它们的尺寸和整体柔韧性。这些结果允许我们构建一种等式,该等式预测学习的可水解单宁的蛋白质沉淀能力的高精度。

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