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β-糖苷酶对异黄酮不同糖苷形式的活性。

Beta-glycosidase activity toward different glycosidic forms of isoflavones.

作者信息

Ismail Baraem, Hayes Kirby

机构信息

Food Science Department, Purdue University, 745 Agriculture Mall Drive, West Lafayette, Indiana 47907, USA.

出版信息

J Agric Food Chem. 2005 Jun 15;53(12):4918-24. doi: 10.1021/jf0404694.

Abstract

Isoflavones, a group of soybean components that significantly contribute to human health and disease prevention, exist in various chemical forms. The enzyme activity can be very sensitive to molecular structure; thus, the profile of the isoflavones can affect their rate of hydrolysis. The objective of this work was to study the beta-glycosidase activities toward isoflavone beta-glycosides and their conjugated forms. Hydrolysis experiments were conducted where beta-glycosides and their conjugates were treated with beta-glycosidase. Results confirmed that beta-glycosidase can hydrolyze nonconjugated beta-glycosides into aglycones. However, when the enzyme amount and/or activity were limited, significant differences in enzyme activity toward the beta-glycosides were observed. On the other hand, beta-glycosidase was not effective in hydrolyzing the conjugated glycosides to their respective aglycones, even with increased levels of the enzyme and with prolonged incubation. The transformation of conjugated glycosides into their respective beta-glycosides will most likely result in increased hydrolysis rates and better absorption.

摘要

异黄酮是大豆中的一组成分,对人体健康和疾病预防有显著作用,它们以多种化学形式存在。酶活性对分子结构可能非常敏感;因此,异黄酮的形态会影响其水解速率。这项工作的目的是研究β-糖苷酶对异黄酮β-糖苷及其共轭形式的活性。进行了水解实验,用β-糖苷酶处理β-糖苷及其共轭物。结果证实,β-糖苷酶可将非共轭β-糖苷水解为苷元。然而,当酶量和/或活性有限时,观察到β-糖苷酶对β-糖苷的活性存在显著差异。另一方面,即使增加酶量并延长孵育时间,β-糖苷酶也不能有效地将共轭糖苷水解为各自的苷元。共轭糖苷转化为各自的β-糖苷很可能会提高水解速率并促进吸收。

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