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Analysis of 12/15-lipoxygenase metabolism of EPA and DHA with special attention to authentication of docosatrienes

机译:对EPA和DHA的12/15-脂氧合酶代谢分析特别关注Docosatrienes的认证

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摘要

A proposed beneficial impact of highly unsaturated “fish oil” fatty acids is their conversion by lipoxygenase (LOX) enzymes to specialized proresolving lipid mediators, including 12/15-LOX products from EPA and DHA. The transformations of DHA include formation of docosatrienes, named for the distinctive conjugated triene of the double bonds. To further the understanding of biosynthetic pathways and mechanisms, herein we meld together biosynthesis and NMR characterization of the unstable leukotriene A (LTA)-related epoxide intermediates formed by recombinant human 15-LOX-1, along with identification of the stable enzymatic products, and extend the findings into the 12/15-LOX metabolism in resident murine peritoneal macrophages. Oxygenation of EPA by 15-LOX-1 converts the initial 15S-hydroperoxide to 14S,15S-trans-epoxy-5Z,8Z,10E,12E,17Z-EPA (appearing as its 8,15-diol hydrolysis products) and mixtures of dihydroperoxy fatty acids, while mainly the epoxide hydrolysis products are evident in the murine cells. DHA also undergoes transformations to epoxides and dihydroperoxides by 15-LOX-1, resulting in a mixture of 10,17-dihydro(pero)xy derivatives (docosatrienes) and minor 7S,17S- and 14,17S-dihydroperoxides. The 10,17S-dihydroxy hydrolysis products of the LTA-related epoxide intermediate dominate the product profile in mouse macrophages, whereas (neuro)protectin D1, the leukotriene B4-related derivative with trans,trans,cis conjugated triene, was undetectable. In this study, we emphasize the utility of UV spectral characteristics for product identification, being diagnostic of the different double bond configurations and hydroxy fatty acid functionality versus hydroperoxide. LC-MS is not definitive for configurational isomers. Secure identification is based on chromatographic retention times, comparison with authentic standards, and the highly distinctive UV spectra.
机译:高度不饱和的“鱼油”脂肪酸的提出的有益影响是它们对专门的预脂凝胶蛋白的脂氧合酶(LOX)酶转化,包括来自EPA和DHA的12/15-LOX产品。 DHA的转化包括多元醇的形成,命名为双键的独特共轭三烯。为了进一步了解生物合成途径和机制,在本文中,我们将通过重组人15-LOX-1形成的不稳定白三烯A(LTA)复合环氧化物中间体的生物合成和NMR表征在一起,以及稳定的酶产物的鉴定,以及将研究结果扩展到常驻小鼠腹膜巨噬细胞中的12/15-Lox代谢中。 EPA的氧合用15-LOX-1将初始15s-氢过氧化物转化为14s,15s-反式环氧-5z,8z,10e,12e,17z-EPA(出现为其8,15-二醇水解产物)和混合物二氢氧基脂肪酸,而主要是鼠细胞中的环氧化物水解产物。 DHA还通过15-LOX-1经历转化为环氧化物和二氢氧化铵,导致10,17-二氢(Pero)Xy衍生物(Docosatrienes)和次要7S,17S-和14,17S-二氢氧化酯的混合物。 LTA相关环氧化物中间体的10,17S-二羟基水解产物在小鼠巨噬细胞中占据了产物曲线,而(Neuro)保护蛋白D1,未检测到与反式的白三烯B4相关衍生物,CIS共轭三烯。在这项研究中,我们强调了UV光谱特性对产品鉴定的效用,是不同双键构造和羟基脂肪酸功能与氢过氧化物的诊断。 LC-MS对配置异构体并不确定。安全识别基于色谱保留时间,与真实标准的比较,以及高度独特的紫外光谱。

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