Conversion of (3S,4R)-Tetrahydrodaidzein to (3S)-Equol by THD Reductase: Proposed Mechanism Involving a Radical Intermediate

  • Kim, Mihyang; 
  • Marsh, E. Neil G.; 
  • Kim, Soo-Un; 
  • Han, Jaehong
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SCOPUS

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초록

To elucidate the mechanism of (3S)-equol biosynthesis, (2,3,4-d(3))-trans-THD was synthesized and converted to (3S)-equol by THD reductase in Eggerthella strain Julong 732. The position of the deuterium atoms in (3S)-equol was determined by H-1 NMR and H-2 NMR spectroscopy, and the product was identified as (2,3,4(alpha)-d(3))-(3S)-equol. All the deuterium atoms were retained, while the OH group at C-4 was replaced by a hydrogen atom with retention of configuration. To explain the deuterium retention in this stereospecific reduction, we propose a mechanism involving radical intermediates.

키워드

HUMAN INTESTINAL BACTERIUM; ABSOLUTE-CONFIGURATIONS; HUMAN FECES; S-EQUOL; DAIDZEIN; BIOTRANSFORMATION; DIHYDRODAIDZEIN; METABOLITES; GENISTEIN
제목
Conversion of (3S,4R)-Tetrahydrodaidzein to (3S)-Equol by THD Reductase: Proposed Mechanism Involving a Radical Intermediate
저자
Kim, Mihyang; Marsh, E. Neil G.; Kim, Soo-Un; Han, Jaehong
DOI
10.1021/bi100465y
발행일
2010-07
유형
Article
저널명
Biochemistry
권
49
호
26
페이지
5582 ~ 5587