Literature DB >> 15640190

Enantioselective synthesis of S-equol from dihydrodaidzein by a newly isolated anaerobic human intestinal bacterium.

Xiu-Ling Wang1, Hor-Gil Hur, Je Hyeon Lee, Ki Tae Kim, Su-Il Kim.   

Abstract

A newly isolated rod-shaped, gram-negative anaerobic bacterium from human feces, named Julong 732, was found to be capable of metabolizing the isoflavone dihydrodaidzein to S-equol under anaerobic conditions. The metabolite, equol, was identified by using electron impact ionization mass spectrometry, (1)H and (13)C nuclear magnetic resonance spectroscopy, and UV spectral analyses. However, strain Julong 732 was not able to produce equol from daidzein, and tetrahydrodaidzein and dehydroequol, which are most likely intermediates in the anaerobic metabolism of dihydrodaidzein, were not detected in bacterial culture medium containing dihydrodaidzein. Chiral stationary-phase high-performance liquid chromatography eluted only one metabolite, S-equol, which was produced from a bacterial culture containing a racemic mixture of dihydrodaidzein. Strain Julong 732 did not show racemase activity to transform R-equol to S-equol and vice versa. Its full 16S rRNA gene sequence (1,429 bp) had 92.8% similarity to that of Eggerthella hongkongenis HKU10. This is the first report of a single bacterium capable of converting a racemic mixture of dihydrodaidzein to enantiomeric pure S-equol.

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Year:  2005        PMID: 15640190      PMCID: PMC544246          DOI: 10.1128/AEM.71.1.214-219.2005

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


  26 in total

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5.  Natural flavonoids and lignans are potent cytostatic agents against human leukemic HL-60 cells.

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Journal:  Life Sci       Date:  1994       Impact factor: 5.037

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  38 in total

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Review 3.  Phytoestrogenic isoflavonoids in epidemiologic and clinical research.

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Journal:  Drug Test Anal       Date:  2009-01       Impact factor: 3.345

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7.  Conversion of daidzein and genistein by an anaerobic bacterium newly isolated from the mouse intestine.

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8.  Isolation of a human intestinal bacterium capable of daidzein and genistein conversion.

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9.  Identification of a novel dihydrodaidzein racemase essential for biosynthesis of equol from daidzein in Lactococcus sp. strain 20-92.

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