4.3 Article

Conversion of cholic acid and chenodeoxycholic acid into their 7-oxo derivatives by Bacteroides intestinalis AM-1 isolated from human feces

Journal

FEMS MICROBIOLOGY LETTERS
Volume 293, Issue 2, Pages 263-270

Publisher

OXFORD UNIV PRESS
DOI: 10.1111/j.1574-6968.2009.01531.x

Keywords

Bacteroides intestinalis; 7-oxo-deoxycholic acid; 7-oxo-lithocholic acid; 7 alpha-hydroxysteroid dehydrogenase; intestinal bacteria; bile acid conversion

Categories

Funding

  1. Ministry of Education, Culture, Sports, Science and Technology, Japan [16380054]
  2. Grants-in-Aid for Scientific Research [16380054] Funding Source: KAKEN

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Secondary bile acid-producing bacteria were isolated from human feces to improve our appreciation of the functional diversity and redundancy of the intestinal microbiota. In total, 619 bacterial colonies were isolated using a nutrient-poor agar medium and the level of secondary bile acid formation was examined in each by a liquid culture, followed by thin-layer chromatography. Of five strains analyzed by 16S rRNA gene sequencing and biochemical testing, one was identified as Bacteroides intestinalis AM-1, which was not previously recognized as a secondary bile-acid producer. GC-MS revealed that B. intestinalis AM-1 converts cholic acid (CA) and chenodeoxycholic acid into their 7-oxo derivatives, 7-oxo-deoxycholic acid (7-oxo-DCA) and 7-oxo-lithocholic acid, respectively. Thus, B. intestinalis AM-1 possesses 7 alpha-hydroxysteroid dehydrogenase (7 alpha-HSDH) activity. In liquid culture, B. intestinalis AM-1 showed a relatively higher productivity of 7-oxo-DCA than Escherichia coli HB101 and Bacteroides fragilis JCM11019(T), which are known to possess 7 alpha-HSDH activity. The level of 7 alpha-HSDH activity was higher in B. intestinalis AM-1 than in the other two strains under the conditions tested. The 7 alpha-HSDH activity in each of the three strains is not induced by CA; instead, it is regulated in a growth phase-dependent manner.

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