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Stereospecific Biotransformation of Dihydrodaidzein into (3S)-Equol by the Human Intestinal Bacterium Eggerthella Strain Julong 732

机译:二氢黄豆苷元的人肠细菌埃格氏菌株朱龙732的立体定向生物转化为(3S)-紫杉醇。

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摘要

Stereochemical course of isoflavanone dihydrodaidzein (DHD) reduction into the isoflavan (3S)-equol via tetrahydrodaidzein (THD) by the human intestinal anaerobic bacterium Eggerthella strain Julong 732 was studied. THD was synthesized by catalytic hydrogenation, and each stereoisomer was separated by chiral high-performance liquid chromatography. Circular dichroism spectroscopy was used to elucidate the absolute configurations of four synthetic THD stereoisomers. Rapid racemization of DHD catalyzed by Julong 732 prevented the substrate stereospecificity in the conversion of DHD into THD from being confirmed. The absolute configuration of THD, prepared by reduction of DHD in the cell-free incubation, was assigned as (3R,4S) via comparison of the retention time to that of the authentic THD by chiral chromatography. Dehydroequol (DE) was unable to produce the (3S)-equol both in the cell-free reaction and in the bacterial transformation, negating the possible intermediacy of DE. Finally, the intermediate (3R,4S)-THD was reduced into (3S)-equol by the whole cell, indicating the inversion of stereochemistry at C-3 during the reduction. A possible mechanism accounting for the racemization of DHD and the inversion of configuration of THD during reduction into (3S)-equol is proposed.
机译:研究了人肠厌氧细菌Eggerthella菌株Jerong 732通过四氢黄豆苷元(THD)将异黄烷酮二氢黄豆苷元(DHD)还原为异黄烷(3S)-雌马酚的立体化学过程。通过催化氢化合成THD,并通过手性高效液相色谱法分离每种立体异构体。圆二色光谱用于阐明四种合成的THD立体异构体的绝对构型。 Julong 732催化的DHD的快速消旋作用使得无法确定DHD转化为THD的底物立体特异性。通过在手性色谱中将保留时间与真实THD的保留时间进行比较,将无细胞培养中通过还原DHD制备的THD的绝对构型指定为(3R,4S)。脱氢雌马酚(DE)在无细胞反应和细菌转化中均不能产生(3S)-雌马酚,从而抵消了DE的可能中介作用。最后,中间体(3R,4S)-THD被整个细胞还原为(3S)-雌马酚,表明还原过程中C-3处的立体化学反转。提出了可能的机制,解释了DHD的消旋化和在还原为(3S)-雌马酚过程中THD构型的反转。

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