Contribution of individual phospholipase A2 enzymes to the cleavage of oxidized phospholipids in human blood plasma.

IF 5 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Lipid Research Pub Date : 2025-01-06 DOI:10.1016/j.jlr.2025.100742
Philipp Jokesch, Olga Oskolkova, Maria Fedorova, Bernd Gesslbauer, Valery Bochkov
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引用次数: 0

Abstract

Phospholipids containing oxidized esterified PUFA residues (OxPLs) are increasingly recognized for multiple biological activities and causative involvement in disease pathogenesis. Pharmacokinetics of these compounds in blood plasma is essentially not studied. Human plasma contains both genuine phospholipases A2 [platelet activating factor acetyl hydrolase (PAF-AH) (also called Lp-PLA2) and secretory phospholipase A2] and multifunctional enzymes capable of removing sn-2 residues in native and oxidized PLs (lecithin-cholesterol acyltransferase, peroxiredoxin-6). The goal of this study was to compare relative activities of different PLA2 enzymes by analyzing cleavage of oxidized 1-palmitoyl-2-arachidonoyl-sn-glycero-phosphatidylcholine (OxPAPC) and oxidized 1-palmitoyl-2-arachidonoyl-sn-glycero-phosphatidylethanolamine (OxPAPE) by diluted plasma in the presence of enzyme inhibitors. We have found that human plasma demonstrated high total PLA2 activity against oxidized PCs and PEs. PAF-AH/Lp-PLA2 played a dominant role in LysoPC and LysoPE production as compared to other enzymes. Molecular species of oxidized 1-palmitoyl-2-arachidonoyl-sn-glycero-phosphatidylcholine and oxidized 1-palmitoyl-2-arachidonoyl-sn-glycero-phosphatidylethanolamine could be divided into three groups according to their degradation rate and sensitivity to PAF-AH/Lp-PLA2 inhibitor darapladib. Oxidatively truncated species were most rapidly metabolized in the presence of plasma; this process was strongly inhibited by darapladib. The rate of degradation of full-length OxPLs depended on the degree of oxygenation. Species containing 1 to 3 oxygen atoms were relatively stable to degradation in plasma, while OxPLs containing > 3 extra oxygens were degraded but at significantly slower rate than truncated species. In contrast to truncated species, degradation of full-length OxPLs with > 3 extra oxygens were only minimally inhibited by darapladib. These data provide further insights into the mechanisms regulating circulating levels of OxPLs and lipid mediators generated by PLA2 cleavage of OxPLs, namely oxylipins and LysoPC.

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单个磷脂酶A2酶对人血浆中氧化磷脂裂解的贡献
磷脂含有氧化酯化多聚脂肪酸残基(OxPLs)越来越多的认识到多种生物活性和致病参与疾病的发病机制。这些化合物在血浆中的药代动力学基本上没有研究。人血浆中含有真正的磷脂酶A2 (PAF-AH(也称为Lp-PLA2)和sPLA2)和能够去除天然和氧化PLs中sn-2残基的多功能酶(LCAT, PRDX6)。本研究的目的是通过分析在酶抑制剂存在下稀释血浆中OxPAPC和OxPAPE的裂解情况,比较不同PLA2酶的相对活性。我们发现人血浆对氧化的pc和pe表现出较高的PLA2总活性。与其他酶相比,PAF-AH/Lp-PLA2在LysoPC和LysoPE的产生中起主导作用。根据降解速率和对PAF-AH/Lp-PLA2抑制剂darapladib的敏感性,OxPAPC和OxPAPE分子种可分为3组。氧化截断种在血浆存在下代谢最快;该过程被darapladib强烈抑制。全长OxPLs的降解速率取决于氧化程度。含有1 ~ 3个氧原子的OxPLs在等离子体中降解相对稳定,而含有b> 3个额外氧原子的OxPLs降解速度明显慢于截断的OxPLs。与截断的物种相比,darapladib仅能最低限度地抑制含有bbb30额外氧的全长OxPLs的降解。这些数据进一步揭示了PLA2切割OxPLs产生的循环中OxPLs水平的调节机制和脂质介质,即氧磷脂和LysoPC。
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来源期刊
Journal of Lipid Research
Journal of Lipid Research 生物-生化与分子生物学
CiteScore
11.10
自引率
4.60%
发文量
146
审稿时长
41 days
期刊介绍: The Journal of Lipid Research (JLR) publishes original articles and reviews in the broadly defined area of biological lipids. We encourage the submission of manuscripts relating to lipids, including those addressing problems in biochemistry, molecular biology, structural biology, cell biology, genetics, molecular medicine, clinical medicine and metabolism. Major criteria for acceptance of articles are new insights into mechanisms of lipid function and metabolism and/or genes regulating lipid metabolism along with sound primary experimental data. Interpretation of the data is the authors’ responsibility, and speculation should be labeled as such. Manuscripts that provide new ways of purifying, identifying and quantifying lipids are invited for the Methods section of the Journal. JLR encourages contributions from investigators in all countries, but articles must be submitted in clear and concise English.
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