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首页> 外文期刊>Biochimie >Role of metallothioneins in superoxide radical generation during copper redox cycling: Defining the fundamental function of metallothioneins
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Role of metallothioneins in superoxide radical generation during copper redox cycling: Defining the fundamental function of metallothioneins

机译:金属硫蛋白在铜氧化还原循环中超氧化物自由基生成中的作用:定义金属硫蛋白的基本功能

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In order to demonstrate the in vivo antioxidant properties of metallothioneins (MTs), the bacteria Escherichia coli was used as a cell reactor in which we compared the metal binding and antioxidative functions of MTs from different species, with different structures and polypeptide lengths. No protective effects of cytoplasmic MTs from cadmium (Cd) or zinc (Zn) contamination were observed in a wild-type E. coli strain, although these MTs can efficiently bind both Cd and Zn. To test their antioxidant properties, MTs were expressed within the cytoplasm of a sodA sodB deficient mutated strain (QC1726). However, a paradoxical MT toxicity was found when this strain was contaminated with Cd and Zn, suggesting that in a wild-type strain, superoxide dismutase counteracts MT toxicity. The most toxic MT was the one with the strongest Cd and Zn binding capacities. This toxic effect was linked to the generation of superoxide radicals, since a Cd-contaminated QC1726 strain expressing oyster MT isoforms produced 75-85% more O_2~- than the control QC1726 strain. Conversely, under anaerobiosis or in the presence of a copper chelator, MTs protected QC1726 strain from Cd and Zn contamination. A model is proposed to explain the observed MT toxicity.
机译:为了证明金属硫蛋白(MTs)的体内抗氧化性能,使用细菌大肠杆菌作为细胞反应器,在其中我们比较了不同物种,结构和多肽长度的MTs的金属结合和抗氧化功能。在野生型大肠杆菌菌株中,未观察到镉(Cd)或锌(Zn)污染引起的胞质MT的保护作用,尽管这些MT可以有效结合Cd和Zn。为了测试其抗氧化性能,MTs在sodA sodB缺陷型突变菌株(QC1726)的细胞质内表达。但是,当该菌株被Cd和Zn污染时,发现了悖论的MT毒性,这表明在野生型菌株中,超氧化物歧化酶抵消了MT毒性。毒性最高的MT是具有最强的Cd和Zn结合能力的MT。这种毒性作用与超氧化物自由基的产生有关,因为表达牡蛎MT同工型的Cd污染QC1726菌株比对照QC1726菌株多产生75-85%的O_2〜-。相反,在厌氧状态下或在存在铜螯合剂的情况下,MT保护QC1726菌株免受Cd和Zn污染。提出了一个模型来解释观察到的MT毒性。

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