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Polyunsaturated phospholipids promote the oxidation and fragmentation of γ-hydroxyalkenals: formation and reactions of oxidatively truncated ether phospholipids

机译:多不饱和磷脂促进γ-羟基烯烃的氧化和断裂:氧化截短的醚磷脂的形成和反应

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摘要

Low density lipoprotein contains traces of biologically active platelet-activating factor (PAF)-like ether phosphatidylcholines (PCs). These oxidatively truncated alkylacylphosphatidylcholines (OxPAFs) are presumably formed through the oxidative truncation of 1-alkyl-2-polyunsaturated fatty acyl PCs. We now report that a diverse structural variety of OxPAFs are generated in small unilamellar vesicles (SUVs) uponmyeloperoxidase (MPO)-promoted autoxidation of ether PCs that incorporate linoleoyl, arachidonyl, or docosahexaenoyl groups at the sn-2 position. Total syntheses are reported that confirm the identities of the new OxPAFs and will facilitate the evaluation of their biologically important chemistry and activities. Especially noteworthy is the formation of OxPAFs containing γ-hydroxyalkenal functionality. Analogous oxidatively truncated diacylphosphatidylcholines are biologically important because they and their more oxidized derivatives are strong ligands for the scavenger receptor CD36. Furthermore, their covalent adduction with proteins can interfere with protein function or generate biologically active carboxyalkylpyrrole derivatives. We now find a profound influence of membrane composition on the stability of OxPAFs. In the presence of a polyunsaturated diacyl PC, the linoleic acid ester of 2-lysophosphatidylcholine, MPO induces the oxidation of aldehydes to carboxylic acids and the further oxidative truncation of γ-hydroxyalkenals. Remarkably, these reactions do not occur readily with MPO in SUVs composed entirely of saturated diacyl-PCs. A mechanistic rationale is presented that can account for this dichotomy.
机译:低密度脂蛋白包含痕量的生物活性血小板活化因子(PAF)-样醚磷脂酰胆碱(PCs)。这些氧化截短的烷基酰基磷脂酰胆碱(OxPAF)可能是通过1-烷基-2-多不饱和脂肪酰基PC的氧化截短而形成的。我们现在报告,在髓过氧化物酶(MPO)促进醚PC的自氧化后,在单层小囊泡(SUVs)中生成了多种结构变化的OxPAF,这些醚PC在sn-2位置掺入了亚油酰基,花生四烯基或二十二碳六烯酰基。据报道,总的合成证实了新的OxPAF的身份,并将有助于评估其重要的化学和活性。尤其值得注意的是含有γ-羟基烯醛官能团的OxPAF的形成。相似的氧化截短的二酰基二磷脂酰胆碱在生物学上很重要,因为它们及其氧化程度更高的衍生物是清除剂受体CD36的强配体。此外,它们与蛋白质的共价加成会干扰蛋白质功能或产生具有生物活性的羧烷基吡咯衍生物。现在我们发现膜组成对OxPAFs的稳定性产生了深远的影响。在多不饱和二酰基PC(2-溶血磷脂酰胆碱的亚油酸酯)的存在下,MPO诱导醛氧化为羧酸,并进一步氧化截断γ-羟基烯烃。值得注意的是,在完全由饱和二酰基-PC组成的SUV中,MPO不易发生这些反应。提出了可以解释这种二分法的机械原理。

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