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Identification and Expression of Genes Involved in the Conversion of Daidzein and Genistein by the Equol-Forming Bacterium Slackia isoflavoniconvertens

机译:形成雌黄酮的大豆异黄酮转化黄豆苷元和染料木黄酮的转化基因的鉴定与表达

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摘要

Gut bacteria play a key role in the metabolism of dietary isoflavones, thereby influencing the availability and bioactivation of these polyphenols in the intestine. The human intestinal bacterium Slackia isoflavoniconvertens converts the main soybean isoflavones daidzein and genistein to equol and 5-hydroxy-equol, respectively. Cell extracts of S. isoflavoniconvertens catalyzed the conversion of daidzein via dihydrodaidzein to equol and that of genistein to dihydrogenistein. Growth of S. isoflavoniconvertens in the presence of daidzein led to the induction of several proteins as observed by two-dimensional difference gel electrophoresis. Based on determined peptide sequences, we identified a cluster of eight genes encoding the daidzein-induced proteins. Heterologous expression of three of these genes in Escherichia coli and enzyme activity tests with the resulting cell extracts identified the corresponding gene products as a daidzein reductase (DZNR), a dihydrodaidzein reductase (DHDR), and a tetrahydrodaidzein reductase (THDR). The recombinant DZNR also converted genistein to dihydrogenistein at higher rates than were observed for the conversion of daidzein to dihydrodaidzein. Higher rates were also observed with cell extracts of S. isoflavoniconvertens. The recombinant DHDR and THDR catalyzed the reduction of dihydrodaidzein to equol, while the corresponding conversion of dihydrogenistein to 5-hydroxy-equol was not observed. The DZNR, DHDR, and THDR were expressed as Strep-tag fusion proteins and subsequently purified by affinity chromatography. The purified enzymes were further characterized with regard to their activity, stereochemistry, quaternary structure, and content of flavin cofactors.
机译:肠细菌在饮食异黄酮的代谢中起关键作用,从而影响这些多酚在肠道中的可用性和生物活化。人类肠道细菌Slackia isoflavoniconvertens将主要大豆异黄酮黄豆苷元和染料木黄酮分别转化为雌马酚和5-羟基雌马酚。异黄酮链霉菌的细胞提取物催化黄豆苷元通过二氢黄豆苷元转化为雌马酚,而染料木黄酮则通过二氢黄豆苷原转换为二氢异黄酮。如通过二维差异凝胶电泳所观察到的,在大豆苷元存在下异黄酮链霉菌的生长导致了几种蛋白质的诱导。基于确定的肽序列,我们确定了编码黄豆苷元诱导的蛋白质的八个基因的簇。这些基因中的三个基因在大肠杆菌中的异源表达以及对所得细胞提取物的酶活性测试确定了相应的基因产物为大豆苷元还原酶(DZNR),二氢黄豆苷元还原酶(DHDR)和四氢黄豆苷元还原酶(THDR)。重组DZNR还以比黄豆苷元转化为二氢黄豆苷元更高的速率将金雀异黄素转化为二氢异黄酮。异黄酮链球菌的细胞提取物也观察到更高的比率。重组DHDR和THDR催化了二氢黄豆苷元还原为雌马酚,而未观察到二氢染料木黄酮相应地转化为5-羟基雌马酚。 DZNR,DHDR和THDR以Strep-tag融合蛋白表达,随后通过亲和色谱纯化。关于纯化的酶的活性,立体化学,季结构和黄素辅因子的含量进一步表征。

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