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首页> 外文期刊>ACS Chemical Biology >Biosynthesis of (?)-5-Hydroxy-equol and 5-Hydroxy-dehydroequol from Soy Isoflavone, Genistein Using Microbial Whole Cell Bioconversion
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Biosynthesis of (?)-5-Hydroxy-equol and 5-Hydroxy-dehydroequol from Soy Isoflavone, Genistein Using Microbial Whole Cell Bioconversion

机译:(α) - 5-羟基(羟基(5-羟基 - 脱氢)的生物合成,来自大豆异黄酮,使用微生物全细胞生物转化的Genistein

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摘要

Equols are isoflavandiols formed by reduction of soy isoflavones such as daidzein and genistein by gut microorganisms. These phytoestrogens are of interest for their various biological effects. We report biosynthesis from genistein to (?)-5-hydroxy-equol in recombinant E. coli expressing three reductases (daidzein reductase DZNR, dihidrodaidzein reductase DHDR, tetrahydrodaidzein reductase THDR) and a racemase (dihydrodaidzein racemase, DDRC) originating from the gut bacterium, Slackia isoflavoniconvertens. The biosynthesized 5-hydroxy-equol proved as an optically negative enantiomer, nonetheless it displayed an inverse circular dichroism spectrum to (S)-equol. Compartmentalized expression of DZNR and DDRC in one E. coli strain and DHDR and THDR in another increased the yield to 230 mg/L and the productivity to 38 mg/L/h. If the last reductase was missing, the intermediate spontaneously dehydrated to 5-hydroxy-dehydroequol in up to 99 mg/L yield. This novel isoflavene, previously not known to be synthesized in nature, was also detected in this biotransformation system. Although (S)-equol favors binding to human estrogen receptor (hER) β over hERα, (?)-5-hydroxy-equol showed the opposite preference. This study provides elucidation of the biosynthetic route of (?)-5-hydroxy-equol and measurement of its potent antagonistic character as a phytoestrogen for the first time.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/acbcct/2017/acbcct.2017.12.issue-11/acschembio.7b00624/201113/11图像/中/ CB-2017-006244_0007.gif“> Equols是通过通过细小微生物减少大豆异黄酮而减少大豆异黄酮的异链烷烃。这些植物雌激素对其各种生物学效应感兴趣。我们将Genistein的生物合成报告为(α) - 5-羟基(Refombinant) e。 Coli 表达三种还原酶(Daidzein还原酶DZNR,二甲肾红豆还原酶DHDR,四氢二丁蛋白还原酶THDR)和源自肠道细菌的出色酶(DihydrodeDiNIn His,DDRC), Slackia异黄酮粥。除了光学负对映体中,生物合成的5-羟基等醇,仍然显示出对() - equol的反向圆形二色性谱。 DZNR和DDRC在一个 e中的划分表达。 COLI 菌株和DHDR和THDR在另一种产量增加到230 mg / L,生产率至38 mg / L / h。如果缺少最后还原酶,则将中间体自发地脱水至5-羟基 - 脱氢等级,高达99mg / L产率。在该生物转化系统中也检测到此前未知以前未知的这种新的异氟伐伐伐。虽然( s ) - equols在Herα上与人雌激素受体(她)β结合,但是(α) - 5-羟基形状显示相反的偏好。该研究阐述了(α) - 5-羟基(羟基(α) - 5-羟基方酚的生物合成途径和其最有效的拮抗性,并且首次测量其植物雌激素。]]>

著录项

  • 来源
    《ACS Chemical Biology》 |2017年第11期|共8页
  • 作者单位

    School of Chemical and Biological Engineering Institute of Engineering Research Seoul National University Seoul Republic of Korea;

    School of Chemical and Biological Engineering Institute of Engineering Research Seoul National University Seoul Republic of Korea;

    Institute of Molecular Biology and Genetics Seoul National University Seoul Republic of Korea;

    School of Chemical and Biological Engineering Institute of Engineering Research Seoul National University Seoul Republic of Korea;

    Department of Environmental Engineering College of Engineering Ajou University Suwon Republic of Korea;

    Department of Biochemistry Molecular Biology &

    Biophysics and The Biotechnology Institute University of Minnesota Saint Paul Minnesota 55108 United States;

    School of Chemical and Biological Engineering Institute of Engineering Research Seoul National University Seoul Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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