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Iron and its sensitive balance in the cell.

机译:铁及其在细胞中的敏感平衡。

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摘要

Iron is vital in life because it is an important component of molecules that undergoes redox reactions or transport oxygen. However, the existence of two stable and inter-convertible forms of iron, iron(III) and iron(II), makes possible one electron being transferred to or captured from other species to form radicals. In particular, superoxide and hydroxyl radicals may be formed in these reactions, both with capacity of attacking other molecules. DNA is one important target and a vast literature exists showing that attack of hydroxyl radical to DNA leads to cell death cellular necrosis, apoptosis, mutation and malignant transformation. Therefore, a fine balance must exist at various levels of an organism to maintain iron concentration in a narrow range, above and below which deleterious effects of distinct nature occur. This review will deal with the formation of oxygen reactive species in iron participating reactions, defenses in the organism against these species, the different mechanisms of iron homeostasis and iron deficiency and iron overload related diseases.
机译:铁在生命中至关重要,因为铁是发生氧化还原反应或运输氧气的分子的重要成分。但是,铁(III)和铁(II)的两种稳定且可相互转换的形式的存在,使得一个电子有可能转移到其他物种或从其他物种捕获而形成自由基。特别地,在这些反应中可能形成超氧化物和羟基自由基,两者都具有攻击其他分子的能力。 DNA是一个重要的靶标,大量文献表明,羟基自由基对DNA的攻击会导致细胞死亡,细胞坏死,凋亡,突变和恶性转化。因此,在生物体的各个水平上必须存在良好的平衡,以将铁浓度维持在狭窄的范围内,在该范围之上和之下,会发生不同性质的有害影响。这篇综述将涉及铁参与反应中氧反应性物种的形成,生物对这些物种的防御,铁稳态和铁缺乏与铁超载相关疾病的不同机制。

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