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不同的氧化磷脂分子对双层膜堆积的影响程度不同。

Different oxidized phospholipid molecules unequally affect bilayer packing.

作者信息

Megli Francesco M, Russo Luciana

机构信息

Dipartimento di Biochimica e Biologia Molecolare E. Quagliariello, Università di Bari, and Centro di Studio sui Mitocondri e Metabolismo Energetico, CNR, Via E. Orabona, 4-70126 Bari, Italy.

出版信息

Biochim Biophys Acta. 2008 Jan;1778(1):143-52. doi: 10.1016/j.bbamem.2007.09.014. Epub 2007 Oct 17.

Abstract

The aim of this study was to gain more detailed knowledge about the effect of the presence of defined oxidized phospholipid molecules in phospholipid bilayers. After chromatographic and mass spectrometry analysis, the previously used product of the Fenton reaction with unsaturated lecithins proved to consist of a plethora of oxidatively modified lecithins, useless either for the detailed study of the effects brought about in the bilayer or as the source of defined oxidized phospholipid molecules. The latter, particularly 2-(omega-carboxyacyl)- and 2-(n-hydroperoxyacyl)-lecithins, can be more conveniently prepared by chemical or enzymatic synthesis rather than by chemical or physical oxidation. The effect of those molecules and of commercially available 12-hydroxy-stearic and dodecanedioic acid was studied in planar supported phospholipid bilayers (SPBs) by use of EPR spectrometry. The SPBs also contained 2-(5-doxylstearoyl)-lecithin as the spin probe, and the EPR spectral anisotropy loss, indicative of bilayer disordering, was measured as a function of the molar percentage of oxidized lipid. Most oxidized lipid molecules examined in this study were able to induce bilayer disordering, while hydroperoxyl group-bearing acyl chains appeared to be much less effective. It is concluded that the effects of different oxidized phospholipids on phospholipid bilayer structure cannot be generalized, as happens with batch-oxidized phospholipids, and that the use of defined oxidized phospholipid molecular species for membrane oxidative stress guarantees a more reliable and detailed response.

摘要

本研究的目的是更详细地了解磷脂双层中特定氧化磷脂分子的存在所产生的影响。经过色谱和质谱分析,先前使用的芬顿反应与不饱和卵磷脂的产物被证明由大量氧化修饰的卵磷脂组成,既无法用于详细研究双层中产生的影响,也不能作为特定氧化磷脂分子的来源。后者,特别是2-(ω-羧酰基)-和2-(n-氢过氧酰基)-卵磷脂,通过化学或酶促合成比通过化学或物理氧化更方便制备。利用电子顺磁共振光谱法(EPR),在平面支撑磷脂双层(SPB)中研究了这些分子以及市售的12-羟基硬脂酸和十二烷二酸的影响。SPB中还含有2-(5-二氧硬脂酰基)-卵磷脂作为自旋探针,并测量了作为氧化脂质摩尔百分比函数的、指示双层无序化的EPR光谱各向异性损失。本研究中检测的大多数氧化脂质分子都能够诱导双层无序化,而带有氢过氧基的酰基链似乎效果要差得多。得出的结论是,不同氧化磷脂对磷脂双层结构的影响不能像批量氧化磷脂那样一概而论,并且使用特定的氧化磷脂分子种类来研究膜氧化应激可确保获得更可靠和详细的响应。

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