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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Electrophoretic evidence for the impairment of complexes of the respiratory chain during iron/ascorbate induced peroxidation in isolated rat liver mitochondria
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Electrophoretic evidence for the impairment of complexes of the respiratory chain during iron/ascorbate induced peroxidation in isolated rat liver mitochondria

机译:电泳证据表明铁/抗坏血酸诱导的大鼠肝线粒体过氧化过程中呼吸链复合物的损伤

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摘要

The impairment of the complexes of the respiratory chain was studied in isolated rat liver mitochondria under the conditions of an iron/ascorbate-mediated oxidative stress. Using blue native electrophoresis technique the NADH-ubiquinone oxidoreductase, ubiquinol-cytochrome-c oxidoreductase, cytochrome oxidase and ATP-synthetase were separated from mitochondrial samples at different stages of peroxidation and quantified by densitometry. In the second dimension the protein complexes were separated into their individual subunits by Tricine/SDS-electrophoresis. In relation to the time course of lipid peroxidation protein losses were moderate in the exponential phase and enhanced towards plateau phase of TBARS formation, when the intensity of staining for the native complexes became reduced by 84%, 69%, 63% and 24% for complexes I, III, V and IV, respectively, and a high molecular aggregation band as a putative marker of oxidative stress was formed. The decline of overall staining by 23%, a decrease in trichloroacetic acid precipitable protein and the formation of acid soluble primary amines suggest the occurrence of fragmentation or degradation processes. Apparently, the impairment of the respiratory chain complexes during peroxidation was not reflected in altered electrophoretic mobilities or specific losses of protein subunits of these innermitochondrial membrane components.
机译:在铁/抗坏血酸介导的氧化应激条件下,在离体大鼠肝线粒体中研究了呼吸链复合物的损伤。使用蓝色天然电泳技术,将NADH-泛醌氧化还原酶,泛醇-细胞色素-C氧化还原酶,细胞色素氧化酶和ATP合成酶从线粒体样品中的不同氧化阶段分离出来,并通过光密度法进行定量。在第二维中,通过Tricine / SDS-电泳将蛋白质复合物分离成它们各自的亚基。关于脂质过氧化的时间过程,当天然复合物的染色强度分别降低84%,69%,63%和24%时,TBARS形成的指数阶段蛋白损失适中,并朝平台期增加。分别形成了配合物I,III,V和IV,并形成了高分子聚集带作为氧化应激的推定标记。总体染色降低了23%,三氯乙酸可沉淀蛋白的降低以及酸溶性伯胺的形成表明发生了断裂或降解过程。显然,过氧化过程中呼吸链复合物的损伤未反映在这些内线粒体膜成分的电泳迁移率改变或蛋白质亚基的特定损失上。

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