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Divalent Metal Ions in Plant Mitochondria and Their Role in Interactions with Proteins and Oxidative Stress-Induced Damage to Respiratory Function

机译:植物线粒体中的二价金属离子及其在与蛋白质相互作用和氧化应激诱导的呼吸功能损害中的作用

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摘要

Understanding the metal ion content of plant mitochondria and metal ion interactions with the proteome are vital for insights into both normal respiratory function and the process of protein damage during oxidative stress. We have analyzed the metal content of isolated Arabidopsis (Arabidopsis thaliana) mitochondria, revealing a 26:8:6:1 molar ratio for iron:zinc:copper:manganese and trace amounts of cobalt and molybdenum. We show that selective changes occur in mitochondrial copper and iron content following in vivo and in vitro oxidative stresses. Immobilized metal affinity chromatography charged with Cu2+, Zn2+, and Co2+ was used to identify over 100 mitochondrial proteins with metal-binding properties. There were strong correlations between the sets of immobilized metal affinity chromatography-interacting proteins, proteins predicted to contain metal-binding motifs, and protein sets known to be oxidized or degraded during abiotic stress. Mitochondrial respiratory chain pathways and matrix enzymes varied widely in their susceptibility to metal-induced loss of function, showing the selectivity of the process. A detailed study of oxidized residues and predicted metal interaction sites in the tricarboxylic acid cycle enzyme aconitase identified selective oxidation of residues in the active site and showed an approach for broader screening of functionally significant oxidation events in the mitochondrial proteome.
机译:了解植物线粒体的金属离子含量以及与蛋白质组的金属离子相互作用对于洞察正常呼吸功能和氧化应激期间蛋白质损伤的过程至关重要。我们分析了分离的拟南芥(Arabidopsis thaliana)线粒体的金属含量,发现铁:锌:铜:锰的摩尔比为26∶8∶6∶1,并且痕量的钴和钼。我们表明体内和体外氧化应激后线粒体铜和铁含量发生选择性变化。固定化的金属亲和层析,分别用Cu 2 + ,Zn 2 + 和Co 2 + 进行鉴定,以鉴定100多种具有金属-绑定属性。固定化的金属亲和色谱相互作用的蛋白质组,预计包含金属结合基序的蛋白质与已知在非生物胁迫期间被氧化或降解的蛋白质组之间具有很强的相关性。线粒体呼吸链途径和基质酶对金属诱导的功能丧失的敏感性差异很大,显示了该过程的选择性。对三羧酸循环酶乌头酸酶中氧化残基和预测的金属相互作用位点的详细研究鉴定了活性位点中残基的选择性氧化,并显示了一种广泛筛选线粒体蛋白质组中功能上重要的氧化事件的方法。

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