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内皮脂肪酶增加高密度脂蛋白的抗氧化能力。

Endothelial lipase increases antioxidative capacity of high-density lipoprotein.

机构信息

Gottfried Schatz Research Center, Molecular Biology and Biochemistry, Medical University of Graz, Neue Stiftingtalstraße 6/6, 8010 Graz, Austria.

Otto Loewi Research Center, Division of Physiological Chemistry, Medical University of Graz, Neue Stiftingtalstraße 6/3, 8010 Graz, Austria.

出版信息

Biochim Biophys Acta Mol Cell Biol Lipids. 2019 Oct;1864(10):1363-1374. doi: 10.1016/j.bbalip.2019.06.011. Epub 2019 Jun 17.

Abstract

Endothelial lipase (EL) is a strong determinant of structural and functional properties of high-density lipoprotein (HDL). We examined whether the antioxidative capacity of HDL is affected by EL. EL-modified HDL (EL-HDL) and control EV-HDL were generated by incubation of HDL with EL- overexpressing or control HepG2 cells. As determined by native gradient gel electrophoresis, electron microscopy, and small-angle X-ray scattering EL-HDL is smaller than EV-HDL. Mass spectrometry revealed an enrichment of EL-HDL with lipolytic products and depletion of phospholipids and triacylglycerol. Kinetics of conjugated diene formation and HPLC-based malondialdehyde quantification revealed that EL-HDL exhibited a significantly higher resistance to copper ion-induced oxidation and a significantly higher capacity to protect low-density lipoprotein (LDL) from copper ion-induced oxidation when compared to EV-HDL. Depletion of the lipolytic products from EL-HDL abolished the capacity of EL-HDL to protect LDL from copper ion-induced oxidation, which could be partially restored by lysophosphatidylcholine enrichment. Proteomics of HDL incubated with oxidized LDL revealed significantly higher levels of methionine 136 sulfoxide in EL-HDL compared to EV-HDL. Chloramine T (oxidizes methionines and modifies free thiols), diminished the difference between EL-HDL and EV-HDL regarding the capacity to protect LDL from oxidation. In absence of LDL small EV-HDL and EL-HDL exhibited higher resistance to copper ion-induced oxidation when compared to respective large particles. In conclusion, the augmented antioxidative capacity of EL-HDL is primarily determined by the enrichment of HDL with EL-generated lipolytic products and to a lesser extent by the decreased HDL particle size and the increased activity of chloramine T-sensitive mechanisms.

摘要

内皮脂肪酶(EL)是高密度脂蛋白(HDL)结构和功能特性的重要决定因素。我们研究了 HDL 的抗氧化能力是否受 EL 影响。通过用过表达 EL 的 HepG2 细胞或对照 HepG2 细胞孵育 HDL,生成 EL 修饰的 HDL(EL-HDL)和对照 EV-HDL。通过天然梯度凝胶电泳、电子显微镜和小角 X 射线散射确定,EL-HDL 比 EV-HDL 更小。质谱分析显示,EL-HDL 富含脂解产物,而磷脂和三酰基甘油则减少。共轭二烯形成的动力学和基于 HPLC 的丙二醛定量显示,与 EV-HDL 相比,EL-HDL 对铜离子诱导的氧化具有更高的抗性,并且对 LDL 具有更高的保护能力,免受铜离子诱导的氧化。从 EL-HDL 中耗尽脂解产物会消除 EL-HDL 保护 LDL 免受铜离子诱导氧化的能力,而通过富含溶血磷脂酰胆碱可部分恢复这种能力。用氧化的 LDL 孵育的 HDL 的蛋白质组学研究表明,EL-HDL 中蛋氨酸 136 亚砜的水平明显高于 EV-HDL。氯胺 T(氧化蛋氨酸并修饰游离巯基)降低了 EL-HDL 和 EV-HDL 之间在保护 LDL 免受氧化方面的差异。在没有 LDL 的情况下,与各自的大颗粒相比,小的 EV-HDL 和 EL-HDL 对铜离子诱导的氧化具有更高的抗性。总之,EL-HDL 增强的抗氧化能力主要取决于 HDL 中 EL 产生的脂解产物的富集,其次是 HDL 颗粒大小的减小和氯胺 T 敏感机制活性的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e48a/6699986/a52e2e9bd3bb/EMS83891-f001.jpg

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