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首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Restoration of growth by manganese in a mutant strain of Escherichia coli lacking most known iron and manganese uptake systems
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Restoration of growth by manganese in a mutant strain of Escherichia coli lacking most known iron and manganese uptake systems

机译:缺乏最广为人知的铁和锰吸收系统的大肠杆菌突变株中锰的生长恢复

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摘要

The interplay of manganese and iron homeostasis and oxidative stress in Escherichia coli can give important insights into survival of bacteria in the phagosome and under differing iron or manganese bioavailabilities. Here, we characterized a mutant strain devoid of all know iron/manganese-uptake systems relevant for growth in defined medium. Based on these results an exit strategy enabling the cell to cope with iron depletion and use of manganese as an alternative for iron could be shown. Such a strategy would also explain why E. coli harbors some iron- or manganese-dependent iso-enzymes such as superoxide dismutases or ribonucleotide reductases. The benefits for gaining a means for survival would be bought with the cost of less efficient metabolism as indicated in our experiments by lower cell densities with manganese than with iron. In addition, this strain was extremely sensitive to the metalloid gallium but this gallium toxicity can be alleviated by low concentrations of manganese.
机译:大肠杆菌中锰和铁的动态平衡与氧化应激之间的相互作用可以为吞噬体中以及不同铁或锰生物利用度下细菌的存活提供重要见解。在这里,我们表征了一种突变菌株,该菌株缺乏与在确定的培养基中生长相关的所有已知的铁/锰吸收系统。根据这些结果,可以显示一种退出策略,使细胞能够应对铁的消耗,并可以使用锰替代铁。这种策略也将解释为什么大肠杆菌具有一些铁或锰依赖性的同功酶,例如超氧化物歧化酶或核糖核苷酸还原酶。如我们的实验所示,锰的细胞密度比铁的细胞密度低,这将以代谢效率较低的代价来获得获得生存手段的好处。另外,该菌株对准金属镓极其敏感,但是低浓度的锰可以减轻这种镓的毒性。

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