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Pseudomonas aeruginosa zinc uptake in chelating environment is primarily mediated by the metallophore pseudopaline

机译:螯合环境中的铜绿假单胞菌锌摄取主要是由金属荧光假花粉介导的

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摘要

Metal uptake is vital for all living organisms. In metal scarce conditions a common bacterial strategy consists in the biosynthesis of metallophores, their export in the extracellular medium and the recovery of a metal-metallophore complex through dedicated membrane transporters. Staphylopine is a recently described metallophore distantly related to plant nicotianamine that contributes to the broad-spectrum metal uptake capabilities of Staphylococcus aureus. Here we characterize a four-gene operon (PA4837–PA4834) in Pseudomonas aeruginosa involved in the biosynthesis and trafficking of a staphylopine-like metallophore named pseudopaline. Pseudopaline differs from staphylopine with regard to the stereochemistry of its histidine moiety associated with an alpha ketoglutarate moiety instead of pyruvate. In vivo, the pseudopaline operon is regulated by zinc through the Zur repressor. The pseudopaline system is involved in nickel uptake in poor media, and, most importantly, in zinc uptake in metal scarce conditions mimicking a chelating environment, thus reconciling the regulation of the cnt operon by zinc with its function as the main zinc importer under these metal scarce conditions.
机译:金属吸收对于所有生物都是至关重要的。在金属短缺的情况下,一种常见的细菌策略包括金属团的生物合成,它们在细胞外培养基中的输出以及通过专用膜转运蛋白回收金属-金属团配合物。 Staphylopine是最近描述的与植物烟碱胺密切相关的金属团簇,其有助于金黄色葡萄球菌的广谱金属吸收能力。在这里,我们在铜绿假单胞菌中表征了一个四基因操纵子(PA4837–PA4834),该生物操纵子参与了一种名为伪茶碱的类金黄色葡萄碱的金属团簇的生物合成和运输。在与α酮戊二酸部分而不是丙酮酸有关的组氨酸部分的立体化学方面,伪帕林与葡萄碱不同。在体内,通过Zur阻遏物,锌可调节拟帕潘操纵子。伪胭脂蛋白系统参与不良培养基中的镍吸收,最重要的是,在模仿螯合环境的金属稀缺条件下参与锌的吸收,因此调和了锌对cnt操纵子的调节,其作为这些金属下主要的锌进口者的功能。稀缺条件。

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