Division of Clinical Pharmacology, Department of Pharmacology, Vanderbilt University Medical School, Nashville, TN 37232, USA.
J Lipid Res. 2009 Dec;50(12):2455-62. doi: 10.1194/jlr.M900181-JLR200. Epub 2009 Jun 24.
Oxygenation of the 5-lipoxygenase product 5S-hydroxyeicosatetraenoic acid by cyclooxygenase-2 yields a bicyclic di-endoperoxide. The di-endoperoxide contains two peroxides spanning from carbons 9 to 11 and 8 to 12, and two hydroxyls at carbons 5 and 15 of arachidonic acid (Schneider C., et al. 2006. Convergent oxygenation of arachidonic acid by 5-lipoxygenase and cyclooxygenase-2. J. Am. Chem. Soc. 128: 720). Here, we report that treatment of the di-endoperoxide with hematin or ferrous chloride results in cleavage of both peroxide O-O bonds and of the bonds between the carbons that carry the peroxide groups, producing the aldehydes 4-hydroxy-2E-nonenal (4-HNE), 8-oxo-5S-hydroxy-6E-octenoic acid, and malondialdehyde (MDA). The hematin- and ferrous iron-catalyzed transformation of the di-endoperoxide proceeded with a similar yield of products as the cleavage of the prostaglandin endoperoxide PGH(2) to 12S-hydroxy-5Z,8E,10E-heptadecatrienoic acid and MDA. Chiral phase HPLC analysis of the 4-HNE cleavage product showed greater than 98% 4S and thus established the S configuration of the 15-carbon of the di-endoperoxide that had not previously been assigned. This transformation of the 5-lipoxygenase/cyclooxygenase-2 derived di-endoperoxide invokes the possibility of a novel pathway to formation of the classic lipid peroxidation products 4-HNE and MDA.
5-脂氧合酶产物 5S-羟基二十碳四烯酸被环氧化酶-2 氧化生成双环二过氧化物。该双过氧化物包含两个横跨碳 9 到 11 和 8 到 12 的过氧化物以及位于花生四烯酸的碳 5 和 15 的两个羟基(Schneider C.,等。2006. 5-脂氧合酶和环氧化酶-2对花生四烯酸的趋同氧化。J. Am. Chem. Soc. 128: 720)。在这里,我们报告说,用血红素或氯化亚铁处理双过氧化物会导致两个过氧化物 O-O 键以及携带过氧化物基团的碳原子之间的键断裂,生成醛 4-羟基-2E-壬烯醛(4-HNE)、8-氧代-5S-羟基-6E-辛烯酸和丙二醛(MDA)。血红素和亚铁离子催化的双过氧化物转化与前列腺素内过氧化物 PGH(2)断裂为 12S-羟基-5Z、8E、10E-十七碳三烯酸和 MDA 的产物产率相似。4-HNE 断裂产物的手性相高效液相色谱分析显示 4S 大于 98%,从而建立了双过氧化物的 15 碳的 S 构型,此前该构型尚未确定。这种 5-脂氧合酶/环氧化酶-2 衍生的双过氧化物的转化提出了形成经典脂质过氧化产物 4-HNE 和 MDA 的新途径的可能性。