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Asymmetric alkene reduction by yeast old yellow enzymes and by a novel Zymomonas mobilis reductase

机译:酵母老黄酶和新型运动发酵单胞菌还原酶还原不对称烯烃

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摘要

The genes encoding yeast old yellow enzymes (OYE 1, 2, and 3) and NAD(P)H-dependent 2-cyclohexen-1-one reductase from Zymomonas mobilis (NCR) were expressed separately in Escherichia coli. All four recombinant strains reduced the carbon double bond in alpha, beta-unsaturated alkenals and alkenones, however rates and enantio-specificities differed. Which of the two possible enantiomers was predominantly formed, was not only dependent on the choice of enzyme but also on the substrate: In addition to a dependency on methylation in alpha- or beta-position, the data of this study illustrate that firstly the E- or Z-configuration (cis- or trans-) of the carbon double-bond and secondly the remainder of the substrate molecule play roles in determining enantio-specificity. Based on the currently accepted mechanism of flavin mediated anti-hydrogenation of the carbon double bond, the data in this study may be explained by a flipped orientation of some of the substrates in the active center of OYE.
机译:来自运动发酵单胞菌(NCR)的酵母旧黄色酶(OYE 1、2和3)和NAD(P)H依赖的2-cyclohexen-1-one还原酶的编码基因分别在大肠杆菌中表达。所有四种重组菌株均降低了α,β-不饱和链烯酮和烯酮中的碳双键,但是速率和对映体特异性不同。两种可能的对映异构体中的哪一种主要形成,不仅取决于酶的选择,还取决于底物:除了依赖于α-或β-位的甲基化之外,这项研究的数据还表明,首先,E碳双键的-或Z-构型(顺式或反式),其次,底物分子的其余部分在确定对映体特异性中起作用。基于目前公认的黄素介导的碳双键抗加氢反应机理,本研究中的数据可以通过OYE活性中心中某些底物的翻转取向来解释。

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