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Iron Binding at Specific Sites within the Octameric HbpS Protects Streptomycetes from Iron-Mediated Oxidative Stress

机译:铁在八聚体HbpS内的特定位点的结合保护链霉菌免受铁介导的氧化应激。

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摘要

The soil bacterium Streptomyces reticuli secretes the octameric protein HbpS that acts as a sensory component of the redox-signalling pathway HbpS-SenS-SenR. This system modulates a genetic response on iron- and haem-mediated oxidative stress. Moreover, HbpS alone provides this bacterium with a defence mechanism to the presence of high concentrations of iron ions and haem. While the protection against haem has been related to its haem-binding and haem-degrading activity, the interaction with iron has not been studied in detail. In this work, we biochemically analyzed the iron-binding activity of a set of generated HbpS mutant proteins and present evidence showing the involvement of one internal and two exposed D/EXXE motifs in binding of high quantities of ferrous iron, with the internal E78XXE81 displaying the tightest binding. We additionally show that HbpS is able to oxidize ferrous to ferric iron ions. Based on the crystal structure of both the wild-type and the mutant HbpS-D78XXD81, we conclude that the local arrangement of the side chains from the glutamates in E78XXE81 within the octameric assembly is a pre-requisite for interaction with iron. The data obtained led us to propose that the exposed and the internal motif build a highly specific route that is involved in the transport of high quantities of iron ions into the core of the HbpS octamer. Furthermore, physiological studies using Streptomyces transformants secreting either wild-type or HbpS mutant proteins and different redox-cycling compounds led us to conclude that the iron-sequestering activity of HbpS protects these soil bacteria from the hazardous side effects of peroxide- and iron-based oxidative stress.
机译:土壤细菌网状链霉菌分泌八聚体蛋白HbpS,它充当氧化还原信号通路HbpS-SenS-SenR的感觉成分。该系统调节铁和血红素介导的氧化应激的遗传反应。此外,单独的HbpS可以为这种细菌提供防御机制,防止存在高浓度的铁离子和血红素。虽然针对血红素的保护作用与其血红素结合和血红素降解活性有关,但尚未详细研究与铁的相互作用。在这项工作中,我们用生化方法分析了一组生成的HbpS突变蛋白的铁结合活性,并提供了证据表明一个内部和两个暴露的D / EXXE基序与大量亚铁的结合有关,内部E78XXE81显示最严格的约束。我们还表明,HbpS能够将亚铁氧化为三价铁离子。基于野生型和突变型HbpS-D78XXD81的晶体结构,我们得出结论,八聚体中E78XXE81中来自谷氨酸的侧链的局部排列是与铁相互作用的先决条件。所获得的数据使我们提出,暴露的和内部的基序构建了一条高度特定的途径,该途径涉及大量铁离子向HbpS八聚体核心的转运。此外,使用链霉菌转化子分泌野生型或HbpS突变蛋白和不同氧化还原循环化合物的生理研究使我们得出结论,HbpS的铁螯合活性可保护这些土壤细菌免受过氧化物和铁基有害副作用的影响。氧化应激。

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