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Biosynthesis isolation and NMR analysis of leukotriene A epoxides: substrate chirality as a determinant of the cis or trans epoxide configuration

机译:白三烯A环氧化物的生物合成分离和NMR分析:底物手性作为顺式或反式环氧化物构型的决定因素

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摘要

Leukotriene (LT)A4 and closely related allylic epoxides are pivotal intermediates in lipoxygenase (LOX) pathways to bioactive lipid mediators that include the leukotrienes, lipoxins, eoxins, resolvins, and protectins. Although the structure and stereochemistry of the 5-LOX product LTA4 is established through comparison to synthetic standards, this is the exception, and none of these highly unstable epoxides has been analyzed in detail from enzymatic synthesis. Understanding of the mechanistic basis of the cis or trans epoxide configuration is also limited. To address these issues, we developed methods involving biphasic reaction conditions for the LOX-catalyzed synthesis of LTA epoxides in quantities sufficient for NMR analysis. As proof of concept, human 15-LOX-1 was shown to convert 15S-hydroperoxy-eicosatetraenoic acid (15S-HPETE) to the LTA analog 14S,15S-trans-epoxy-eicosa-5Z,8Z,10E,12E-tetraenoate, confirming the proposed structure of eoxin A4. Using this methodology we then showed that recombinant Arabidopsis AtLOX1, an arachidonate 5-LOX, converts 5S-HPETE to the trans epoxide LTA4 and converts 5R-HPETE to the cis epoxide 5-epi-LTA4, establishing substrate chirality as a determinant of the cis or trans epoxide configuration. The results are reconciled with a mechanism based on a dual role of the LOX nonheme iron in LTA epoxide biosynthesis, providing a rational basis for understanding the stereochemistry of LTA epoxide intermediates in LOX-catalyzed transformations.
机译:白三烯(LT)A4和密切相关的烯丙基环氧化合物是脂加氧酶(LOX)途径中通往生物活性脂质介体的关键中间体,这些介质包括白三烯,脂类毒素,Eoxin,Resolvins和Protectins。尽管通过与合成标准品的比较确定了5-LOX产物LTA4的结构和立体化学,但这是例外,并且没有从酶促合成中详细分析这些高度不稳定的环氧化物。对顺式或反式环氧化物构型的机理基础的理解也受到限制。为了解决这些问题,我们开发了涉及双相反应条件的方法,用于LOX催化的LTA环氧化物的合成,其数量足以进行NMR分析。作为概念的证明,人类15-LOX-1被证明可以将15S-氢过氧-二十碳四烯酸(15S-HPETE)转化为LTA类似物14S,15S-反式环氧-二十碳五烯5Z,8Z,10E,12E-四烯酸酯,证实了eoxin A4的拟议结构。然后,我们使用这种方法显示了重组拟南芥AtLOX1(花生四烯酸5-LOX)将5S-HPETE转化为反式环氧LTA4,并将5R-HPETE转化为顺式环氧化合物5- epi -LTA4,建立了底物手性决定顺式反式环氧化物构型的决定因素。该结果与一种基于LOX非血红素铁在LTA环氧生物合成中的双重作用的机制相吻合,为理解LOX催化的转化中LTA环氧中间体的立体化学提供了合理的基础。

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