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植物次生代谢产物紫堇醇灵的微生物转化研究 。

Biotransformation of plant secondary metabolite decursin by Mycobacterium sp. PYR1001.

机构信息

Department of Biotechnology (BK21 Program), Chung-Ang University, Anseong 456-756, Republic of Korea.

出版信息

J Agric Food Chem. 2010 Mar 10;58(5):2931-4. doi: 10.1021/jf903379c.

Abstract

Decursin and its structural isomer decursinol angelate are major secondary metabolites in the root of Angelica gigas Nakai which possess several chemotherapeutic properties. We isolated bacteria capable of transforming decursin and determined metabolites and biotransformation kinetics. Decursinol angelate was not metabolized to any significant extent. Resting cells of Mycobacterium sp. PYR1001 were able to transform decursin. After 24 h incubation, 5 mM of decursin was completely transformed to a metabolite, the structure of which was determined by NMR and mass spectral analyses to be decursinol. This conversion was shown to be catalyzed by an esterase activity, and the activity was found to be specific for decursin. These results suggest that strain PYR1001 can be successfully used to transform decursin for the production of decursinol, a compound known to have cancer chemopreventive activity.

摘要

当当归中的主要次生代谢产物白芷素及其结构异构体当归醇当归酸酯具有多种化疗特性。我们分离出能够转化白芷素的细菌,并确定了代谢产物和生物转化动力学。当归醇当归酸酯没有被大量代谢。分枝杆菌 PYR1001 的静止细胞能够转化白芷素。经过 24 小时孵育,5 mM 的白芷素完全转化为一种代谢产物,其结构通过 NMR 和质谱分析确定为白芷醇。这种转化被证明是由酯酶活性催化的,并且该活性被发现对白芷素有特异性。这些结果表明,PYR1001 菌株可成功用于转化白芷素生产具有抗癌化学预防活性的化合物白芷醇。

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