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Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins

机译:转移和酶介导的氧化磷脂酰胆碱和低密度脂蛋白在低密度和高密度脂蛋白之间的溶血磷脂酰胆碱的代谢

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摘要

Oxidized low-density lipoprotein (oxLDL) and oxidized high-density lipoprotein (oxHDL), known as risk factors for cardiovascular disease, have been observed in plasma and atheromatous plaques. In a previous study, the content of oxidized phosphatidylcholine (oxPC) and lysophosphatidylcholine (lysoPC) species stayed constant in isolated in vivo oxLDL but increased in copper-induced oxLDL in vitro. In this study, we prepared synthetic deuterium-labeled 1-palmitoyl lysoPC and palmitoyl-glutaroyl PC (PGPC), a short chain-oxPC to elucidate the metabolic fate of oxPC and lysoPC in oxLDL in the presence of HDL. When LDL preloaded with d13-lysoPC was mixed with HDL, d13-lysoPC was recovered in both the LDL and HDL fractions equally. d13-LysoPC decreased by 50% after 4 h of incubation, while d13-PC increased in both fractions. Diacyl-PC production was abolished by an inhibitor of lecithin-cholesterol acyltransferase (LCAT). When d13-PGPC-preloaded LDL was incubated with HDL, d13-PGPC was transferred to HDL in a dose-dependent manner when both LCAT and lipoprotein-associated phospholipase A2 (Lp-PLA2) were inhibited. Lp-PLA2 in both HDL and LDL was responsible for the hydrolysis of d13-PGPC. These results suggest that short chain-oxPC and lysoPC can transfer between lipoproteins quickly and can be enzymatically converted from oxPC to lysoPC and from lysoPC to diacyl-PC in the presence of HDL.
机译:在血浆和血管斑块中,已经观察到氧化低密度脂蛋白(OXLDL)和氧化高密度脂蛋白(OXHDL),称为心血管疾病的危险因素。在先前的研究中,氧化磷脂酰胆碱(OXPC)和溶血磷酰氨基胆碱(Lysopc)物种的含量在体内分离的体内分离中持续,但在体外铜诱导的oxldl增加。在该研究中,我们制备了合成的氘标记的1-palmitoyl溶胶和Palmitoyl-grutaroyl PC(PGPC),短链 - oxpc,在HDL存在下阐明OXLDL的oxpc和溶血剂的代谢命运。当用D13-LYSOPC预加载的LDL与HDL混合时,在LDL和HDL级分中回收D13-LYSOPC。孵育4小时后,D13-LYSOPC减少了50%,而D13-PC在两种部分中增加。卵磷脂 - 胆固醇酰基转移酶(LCAT)的抑制剂废除了二酰基-C的产量。当将D13-PGPC预加载的LDL与HDL一起孵育时,当抑制LCAT和脂蛋白相关的磷脂酶A2(LP-PLA2)时,将D13-PGPC转移到HDL时以剂量依赖性方式转移到HDL。 HDL和LDL中的LP-PLA2负责D13-PGPC的水解。这些结果表明,短链 - oxpc和溶血管可以快速地在脂蛋白之间转移,并且可以在HDL存在下从OXPC和Lysopc酶转化为二酰基-C。

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