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利用来源于 的支链淀粉蔗糖酶合成大豆异黄酮苷元的α-连接葡萄糖苷

Synthesis of Alpha-Linked Glucosides from Soybean Isoflavone Aglycones Using Amylosucrase from .

机构信息

Department of Food Science and Biotechnology, Kyung Hee University, Yongin 17104, Republic of Korea.

Graduate School of Biotechnology and Department of Oriental Medicinal Biotechnology, Kyung Hee University, Yongin 17104, Republic of Korea.

出版信息

J Agric Food Chem. 2023 Feb 8;71(5):2430-2437. doi: 10.1021/acs.jafc.2c07778. Epub 2023 Jan 26.

Abstract

Soybean isoflavone aglycones (SIAs) have many biological activities but are poorly water-soluble in the human body. Glycosylation provides structural diversity to SIAs and can alter their physicochemical properties, including water solubility. An alpha-linked glucosylation of SIA was achieved using amylosucrase from . A total of 13 alpha-linked glucosyl SIAs were obtained, and their colors in solution were confirmed. The structures of the isolated compounds were identified by mass spectrometry and multidimensional nuclear magnetic resonance spectroscopy. The amylosucrase transglycosylation formed new isoflavone glycosides with alpha glycosidic bonds at C-7 and/or C-4' of SIAs, followed by the production of isoflavone glycosides with alpha (1 → 6) glycosidic bonds. The products with a glucosyl moiety attached to the C-4' of SIAs were found to be more water-soluble than their counterparts attached to the C-7 and/or betalinkages. This study suggests a strategy for the synthesis of bioactive compounds with enhanced water solubility through alpha-linked glucosylation.

摘要

大豆异黄酮苷元(SIAs)具有许多生物活性,但在人体中水溶性较差。糖基化赋予 SIAs 结构多样性,并可以改变它们的物理化学性质,包括水溶性。使用 中的淀粉蔗糖酶实现了 SIA 的α-连接葡萄糖基化。总共获得了 13 种α-连接葡萄糖基 SIAs,并确认了它们在溶液中的颜色。通过质谱和多维核磁共振波谱鉴定了分离化合物的结构。淀粉蔗糖酶的转糖苷作用在 SIAs 的 C-7 和/或 C-4'位形成了具有α糖苷键的新的异黄酮糖苷,随后生成了具有α(1→6)糖苷键的异黄酮糖苷。发现连接到 SIAs 的 C-4'上的葡萄糖基部分的产物比连接到 C-7 和/或β位的产物具有更高的水溶性。这项研究提出了一种通过α-连接葡萄糖基化合成具有增强水溶性的生物活性化合物的策略。

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