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黑曲霉对植物类黄酮桑辛素的降解作用

Degradation of the plant flavonoid phellamurin by Aspergillus niger.

作者信息

Sakai S

出版信息

Appl Environ Microbiol. 1977 Nov;34(5):500-5. doi: 10.1128/aem.34.5.500-505.1977.

Abstract

We have previously described the structure of phellamurin, a plant flavonoid, as 3,4',5,7-tetrahydroxy-8-isoprenylflavanone-7-O-glucoside (17). Degradation of phellamurin by Aspergillus niger using modified Czapek-Dox medium as well as phellamurin or one of its degradation products as a sole carbon source, is reported here. Eleven compounds are identified from phellamurin degradation products. A. niger apparently decomposes phellamurin by first removing glucose with beta-glucosidase; neophellamuretin is the first degradation product. Fission of the heterocyclic ring of (5''-hydroxyisopropyl-4'',5''-dihydrofurano)[2'',3''-h]3,4',5-trihydroxyflavanone, which is obtained from neophellamuretin through a few alterations of the side chain, is followed by cleavage of a C--C bond between C=O and carbon at alpha-position and conversion of (5''-hydroxyisopropyl-4'',5''-dihydrofurano)[2'',3''-d]-2',4,6',alpha-tetrahydroxychalcone to rho-hydroxymandelic acid (B-ring) and 2,4,6-trihydroxy-5-carboxyphenylacetic acid (A-ring). It is suggested that rho-hydroxymandelic acid is oxidized to rho-hydroxybenzoic acid. 2,4,6-Trihydroxy-5-carboxyphenylacetic acid is metabolized to phloroglucinol carboxylic acid, which subsequently is decarboxylated to phloroglucinol. These results provided new information on the isoprene unit metabolism of the side chain of phellamurin and firmly established the degradation pathway of phellamurin by A. niger.

摘要

我们之前已将植物类黄酮桑橙素的结构描述为3,4',5,7-四羟基-8-异戊烯基黄烷酮-7-O-葡萄糖苷(17)。本文报道了使用改良的察氏培养基,黑曲霉对桑橙素进行降解,以及将桑橙素或其降解产物之一作为唯一碳源的情况。从桑橙素降解产物中鉴定出了11种化合物。黑曲霉显然是先通过β-葡萄糖苷酶去除葡萄糖来分解桑橙素;新桑橙素是首个降解产物。由新桑橙素经侧链的一些改变得到的(5''-羟基异丙基-4'',5''-二氢呋喃并)[2'',3''-h]3,4',5-三羟基黄烷酮的杂环开裂,随后是C=O与α位碳之间的C-C键断裂,并将(5''-羟基异丙基-4'',5''-二氢呋喃并)[2'',3''-d]-2',4,6',α-四羟基查耳酮转化为ρ-羟基扁桃酸(B环)和2,4,6-三羟基-5-羧基苯乙酸(A环)。有人认为ρ-羟基扁桃酸被氧化为ρ-羟基苯甲酸。2,4,6-三羟基-5-羧基苯乙酸被代谢为间苯三酚羧酸,随后脱羧生成间苯三酚。这些结果为桑橙素侧链的异戊二烯单元代谢提供了新信息,并明确了黑曲霉对桑橙素的降解途径。

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