Literature DB >> 412468

Degradation of the plant flavonoid phellamurin by Aspergillus niger.

S Sakai.   

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.

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Year:  1977        PMID: 412468      PMCID: PMC242690          DOI: 10.1128/aem.34.5.500-505.1977

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  8 in total

1.  Microbiological transformation of flavonoids. II. Transformations of (plus or minus) flavanone.

Authors:  S R Udupa; A Banerji; M S Chadha
Journal:  Tetrahedron       Date:  1969-11       Impact factor: 2.457

2.  Identification of products produced by the anaerobic degradation of rutin and related flavonoids by Butyrivibrio sp. C3.

Authors:  H G Krishnamurty; K J Cheng; G A Jones; F J Simpson; J E Watkin
Journal:  Can J Microbiol       Date:  1970-08       Impact factor: 2.419

3.  Microbial degradation of aromatic compounds.

Authors:  D T Gibson
Journal:  Science       Date:  1967-09-13       Impact factor: 47.728

4.  The metabolism of aromatic compounds with different side chains by a pseudomonas.

Authors:  E R Blakley
Journal:  Can J Microbiol       Date:  1967-07       Impact factor: 2.419

5.  The bacterial degradation of flavonoids. Oxidative fission of the A-ring of dihydrogossypetin by a Pseudomonas sp.

Authors:  A M Jeffrey; D M Jerina; R Self; W C Evans
Journal:  Biochem J       Date:  1972-11       Impact factor: 3.857

6.  Influence of side-chain substituents on the position of cleavage of the benzene ring by Pseudomonas fluorescens.

Authors:  M M Seidman; A Toms; J M Wood
Journal:  J Bacteriol       Date:  1969-03       Impact factor: 3.490

7.  Synthesis of the enzymes of the mandelate pathway by Pseudomonas putida. I. Synthesis of enzymes by the wild type.

Authors:  G D Hegeman
Journal:  J Bacteriol       Date:  1966-03       Impact factor: 3.490

8.  The bacterial degradation of flavonoids. Hydroxylation of the A-ring of taxifolin by a soil pseudomonad.

Authors:  A M Jeffrey; M Knight; W C Evans
Journal:  Biochem J       Date:  1972-11       Impact factor: 3.857

  8 in total
  1 in total

1.  Elucidation of the flavonoid catabolism pathway in Pseudomonas putida PML2 by comparative metabolic profiling.

Authors:  Bhinu V S Pillai; Sanjay Swarup
Journal:  Appl Environ Microbiol       Date:  2002-01       Impact factor: 4.792

  1 in total

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