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大麦和燕麦β-葡聚糖与酚类衍生物的分子相互作用。

Molecular interactions between barley and oat beta-glucans and phenolic derivatives.

机构信息

Plant Biochemistry Laboratory and Laboratory for Molecular Plant Biology, VKR Research Centre Pro-Active Plants, Department of Plant Biology and Biotechnology, University of Copenhagen, Thorvaldsensvej 40, 1871 Frederiksberg, Denmark.

出版信息

J Agric Food Chem. 2009 Mar 11;57(5):2056-64. doi: 10.1021/jf802057v.

Abstract

Equilibrium dialysis, molecular modeling, and multivariate data analysis were used to investigate the nature of the molecular interactions between 21 vanillin-inspired phenolic derivatives, 4 bile salts, and 2 commercially available beta-glucan preparations, Glucagel and PromOat, from barley and oats. The two beta-glucan products showed very similar binding properties. It was demonstrated that the two beta-glucan products are able to absorb most phenolic derivatives at a level corresponding to the absorption of bile salts. Glucosides of the phenolic compounds showed poor or no absorption. The four phenolic derivatives that showed strongest retention in the dialysis assay shared the presence of a hydroxyl group in para-position to a CHO group. However, other compounds with the same structural feature but possessing a different set of additional functional groups showed less retention. Principal component analysis (PCA) and partial least-squares regression (PLS) calculations using a multitude of diverse descriptors related to electronic, geometrical, constitutional, hybrid, and topological features of the phenolic compounds showed a marked distinction between aglycon, glucosides, and bile salt retention. These analyses did not offer additional information with respect to the mode of interaction of the individual phenolics with the beta-glucans. When the barley beta-glucan was subjected to enzyme degradation, the ability to bind some but not all of the phenolic derivatives was lost. It is concluded that the binding must be dependent on multiple characteristics that are not captured by a single molecular descriptor.

摘要

采用平衡透析、分子建模和多元数据分析方法,研究了 21 种香草醛衍生酚类化合物、4 种胆盐与 2 种市售大麦和燕麦来源的β-葡聚糖制剂(Glucagel 和 PromOat)之间的分子相互作用性质。两种β-葡聚糖产品表现出非常相似的结合特性。研究表明,两种β-葡聚糖产品能够吸收大部分酚类衍生物,其吸收水平与胆盐的吸收水平相当。酚类化合物的糖苷显示出较差或几乎没有吸收。在透析实验中保留能力最强的 4 种酚类衍生物都具有在对位有一个羟基基团和 CHO 基团的结构特征。然而,具有相同结构特征但具有不同附加官能团的其他化合物保留能力较弱。使用与酚类化合物的电子、几何、构象、杂化和拓扑特征相关的多种不同描述符进行主成分分析(PCA)和偏最小二乘回归(PLS)计算,显示了糖苷、配糖体和胆盐保留之间的明显区别。这些分析并未提供有关单个酚类化合物与β-葡聚糖相互作用模式的其他信息。当大麦β-葡聚糖进行酶降解时,其与一些但不是所有酚类衍生物的结合能力丧失。因此,可以得出结论,这种结合必须依赖于多个特征,而这些特征无法通过单个分子描述符来捕捉。

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