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利用工程技术逐步合成槲皮素双糖苷 。

Stepwise Synthesis of Quercetin Bisglycosides Using Engineered .

作者信息

Choi Gyu Sik, Kim Hyeon Jeong, Kim Eun Ji, Lee Su Jin, Lee Youngshim, Ahn Joong-Hoon

机构信息

Department of Integrative Bioscience and Biotechnology, Bio/Molecular Informatics Center, Konkuk University, Seoul 05029, Republic of Korea.

出版信息

J Microbiol Biotechnol. 2018 Nov 28;28(11):1859-1864. doi: 10.4014/jmb.1807.07043.

Abstract

Synthesis of flavonoid glycoside is difficult due to diverse hydroxy groups in flavonoids and sugars. As such, enzymatic synthesis or biotransformation is an approach to solve this problem. In this report, we used stepwise biotransformation to synthesize two quercetin bisglycosides (quercetin 3--glucuronic acid 7--rhamnoside [Q-GR] and quercetin 3--arabinose-7--rhamnoside [Q-AR]) because quercetin -rhamnosides contain antiviral activity. Two sequential enzymatic reactions were required to synthesize these flavonoid glycosides. We first synthesized quercetin 3--glucuronic acid [Q-G], and quercetin 3--arabinose-[Q-A] from quercetin using harboring specific uridine diphopsphate glycosyltransferase (UGT) and genes for UDP-glucuronic acid and UDP-arabinose, respectively. With each quercetin 3--glycoside, rhamnosylation using harboring UGT and the gene for UDP-rhamnose was conducted. This approach resulted in the production of 44.8 mg/l Q-GR and 45.1 mg/l Q-AR. This stepwise synthesis could be applicable to synthesize various natural product derivatives in case that the final yield of product was low due to the multistep reaction in one cell or when sequential synthesis is necessary in order to reduce the synthesis of byproducts.

摘要

由于黄酮类化合物和糖类中存在多样的羟基,黄酮糖苷的合成具有一定难度。因此,酶促合成或生物转化是解决这一问题的一种方法。在本报告中,我们采用逐步生物转化法合成了两种槲皮素双糖苷(槲皮素3 - 葡萄糖醛酸7 - 鼠李糖苷[Q - GR]和槲皮素3 - 阿拉伯糖 - 7 - 鼠李糖苷[Q - AR]),因为槲皮素 - 鼠李糖苷具有抗病毒活性。合成这些黄酮糖苷需要两个连续的酶促反应。我们首先分别使用携带特定尿苷二磷酸糖基转移酶(UGT)以及UDP - 葡萄糖醛酸和UDP - 阿拉伯糖基因的菌株,从槲皮素合成了槲皮素3 - 葡萄糖醛酸[Q - G]和槲皮素3 - 阿拉伯糖[Q - A]。对于每种槲皮素3 - 糖苷,使用携带UGT和UDP - 鼠李糖基因的菌株进行鼠李糖基化反应。该方法得到了44.8 mg/l的Q - GR和45.1 mg/l的Q - AR。这种逐步合成法适用于合成各种天然产物衍生物,比如在单个细胞中因多步反应导致产物最终产量较低的情况,或者为了减少副产物合成而需要进行连续合成的情况。

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