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Distinctive Oxidized Cardiolipin Species Generated by Singlet Oxygen and Radical Initiator Characterized by LC-MS/MS Analysis

机译:单向氧和自由基引发剂产生的独特氧化心脂物种,其特征在于LC-MS / MS分析

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Cardiolipin (CL) is a phospholipid predominantly found in the mitochondrial inner membrane and especially associated structurally with proteins of the electron transport chain (ETC). Since the mitochondrial ETC is the major reactive oxygen species (ROS) generating site, the proximity to the ETC and the bisallylic methylenes of the polyunsaturated fatty acid chains of CL make it a likely target of ROS in mitochondrial inner membrane. Identifying oxidized cellular CL products uniquely derived from certain ROS could serve as biomarkers for the presence of the ROS and help to understand the mechanism of oxidative stress. We exposed CL, under aerobic conditions, to singlet oxygen, a radical initiator, 2,2'-azobis(2-methylpropionamidine) dihydrochloride, or room air and the oxidized CL species were characterized by LC-MS/MS. Unique products, chromatographically separable and identified as CL dihydroperoxides, were produced by singlet oxygen-mediated oxidation but not present or barely detectable from radical oxidation or air oxidation. Monohydroperoxides and bis monohydroperoxides of CL were generated in all three oxidation conditions. No oxidative cleavage of the acyl chains was observed from any of the oxidant, in contrast to linoleic acid oxidation promoted by exogenous ferrous ion. Our LC-MS/MS method can separate and characterize oxidized CL species by generating distinctive fragment ions from the cleavage of oxidized acyl chains, particularly the dihydroperoxides that is uniquely generated by singlet oxygen.
机译:Cardiolipin(Cl)是主要在线粒体内膜中发现的磷脂,特别是在结构上与电子传输链(ETC)的蛋白质相关联。由于线粒体等是主要的活性氧物质(ROS)产生部位,因此Cl的多不饱和脂肪酸链的等等和偏平甲基使其成为线粒体内膜中ROS的可能靶标。鉴定从某些ROS唯一地衍生的氧化细胞Cl产品可以用作ROS存在的生物标志物,并有助于理解氧化应激的机制。通过LC-MS / MS,我们暴露于单线时氧,直接引发剂,自由基引发剂,2,2'-偶氮二胺(2-甲基丙脒)二盐酸盐,或室内空气和氧化的CL物种。独特的产品,色谱分离和鉴定为Cl二氢氧化酯,由单线氧介导的氧化产生,但不存在或根本不可检测到自由基氧化或空气氧化。在所有三种氧化条件下产生Cl的单氢化合物和双氢氧化物。与由外源性铁离子促进的促进的亚油酸氧化相反,从任何氧化剂中观察到酰基链的氧化裂解。我们的LC-MS / MS方法可以通过从氧化酰基链的切割,特别是通过单线氧产生唯一产生的二氢氧化物来分离和表征氧化的Cl种。

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