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呼吸状态IV产生的活性氧在体外破坏线粒体双层堆积顺序。一项电子顺磁共振研究。

Respiration state IV-generated ROS destroy the mitochondrial bilayer packing order in vitro. An EPR study.

作者信息

Megli Francesco M, Sabatini Karen

机构信息

Dipartimento di Biochimica e Biologia Molecolare, Università di Bari, CNR, Via E. Orabona 4, 70126 Bari, Italy.

出版信息

FEBS Lett. 2003 Aug 28;550(1-3):185-9. doi: 10.1016/s0014-5793(03)00861-5.

Abstract

The aim of the present study was to detect defective structural properties in bilayers of mitochondrial phospholipids after oxidative stress of isolated mitochondria in vitro, reportedly during respiration state IV. The structural behaviour of extracted phospholipids was studied by electron paramagnetic resonance (EPR) spectrometry in oriented phospholipid bilayers spin-labelled with 5-doxyl-lecithin, by detecting of the degree of EPR spectral anisotropy loss, indicative of the phospholipid bilayer packing order. Bilayers of phospholipids from untreated mitochondria showed the highest spectral anisotropy, hence highly ordered structure, while chemically oxidised phospholipid yielded almost completely disordered supported phospholipid bilayers. Samples from mitochondria after respiration state IV showed bilayer disorder increasing with oxidation time, while inclusion of the antioxidant resveratrol in the respiration medium almost completely prevented bilayer disordering. On the other hand, beta-n-doxylstearoyl-lecithin spin-labelled mitochondria showed unchanged order parameter S at C positions 5, 12 and 16 after respiration state IV, confirming the insensitivity of this parameter to phospholipid oxidative stress. It is concluded that reactive oxygen species attack to the membrane affects lipid packing order more than fluidity, and that EPR anisotropy loss reveals oxidative damage to the bilayer better than the order parameter.

摘要

本研究的目的是检测体外分离的线粒体在氧化应激后(据报道在呼吸状态IV期间)线粒体磷脂双层结构特性的缺陷。通过电子顺磁共振(EPR)光谱法研究提取的磷脂的结构行为,该方法是在以5-多羟基卵磷脂自旋标记的取向磷脂双层中进行,通过检测EPR光谱各向异性损失的程度,该程度指示磷脂双层堆积顺序。未经处理的线粒体的磷脂双层显示出最高的光谱各向异性,因此具有高度有序的结构,而化学氧化的磷脂产生几乎完全无序的支撑磷脂双层。呼吸状态IV后的线粒体样品显示双层无序随氧化时间增加,而在呼吸介质中加入抗氧化剂白藜芦醇几乎完全防止了双层无序。另一方面,β-n-多羟基硬脂酰卵磷脂自旋标记的线粒体在呼吸状态IV后在C位置5、12和16处的序参数S保持不变,证实该参数对磷脂氧化应激不敏感。得出的结论是,活性氧对膜的攻击对脂质堆积顺序的影响大于对流动性的影响,并且EPR各向异性损失比序参数更能揭示双层的氧化损伤。

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