首页> 美国卫生研究院文献>Journal of Bacteriology >The Ferrichrome Uptake Pathway in Pseudomonas aeruginosa Involves an Iron Release Mechanism with Acylation of the Siderophore and Recycling of the Modified Desferrichrome
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The Ferrichrome Uptake Pathway in Pseudomonas aeruginosa Involves an Iron Release Mechanism with Acylation of the Siderophore and Recycling of the Modified Desferrichrome

机译:铜绿假单胞菌中铬铁的吸收途径涉及铁的释放机制铁矿的酰化和修饰的铁铬铁的回收

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摘要

The uptake of iron into Pseudomonas aeruginosa is mediated by two major siderophores produced by the bacterium, pyoverdine and pyochelin. The bacterium is also able of utilize several heterologous siderophores of bacterial or fungal origin. In this work, we have investigated the iron uptake in P. aeruginosa PAO1 by the heterologous ferrichrome siderophore. 55Fe uptake assays showed that ferrichrome is transported across the outer membrane primarily (80%) by the FiuA receptor and to a lesser extent (20%) by a secondary transporter. Moreover, we demonstrate that like in the uptake of ferripyoverdine and ferripyochelin, the energy required for both pathways of ferrichrome uptake is provided by the inner membrane protein TonB1. Desferrichrome-55Fe uptake in P. aeruginosa was also dependent on the expression of the permease FiuB, suggesting that this protein is the inner membrane transporter of the ferrisiderophore. A biomimetic fluorescent analogue of ferrichrome, RL1194, was used in vivo to monitor the kinetics of iron release from ferrichrome in P. aeruginosa in real time. This dissociation involves acylation of ferrichrome and its biomimetic analogue RL1194 and recycling of both modified siderophores into the extracellular medium. FiuC, an N-acetyltransferase, is certainly involved in this mechanism of iron release, since its mutation abolished desferrichrome-55Fe uptake. The acetylated derivative reacts with iron in the extracellular medium and is able to be taken up again by the cells. All these observations are discussed in light of the current knowledge concerning ferrichrome uptake in P. aeruginosa and in Escherichia coli.
机译:铜绿假单胞菌对铁的吸收由细菌产生的两种主要铁载体介导。该细菌还能够利用细菌或真菌来源的几种异源铁载体。在这项工作中,我们研究了异源铁铬铁载体对铜绿假单胞菌PAO1中铁的吸收。 55 Fe吸收分析表明,铁铬铁主要通过FiuA受体转运(80%)穿过外膜,而次要转运蛋白转运的程度较小(20%)。此外,我们证明像摄取铁氧嘧啶和铁氧嘧啶一样,内膜蛋白TonB1提供了铁铬色素摄取的两种途径所需的能量。铜绿假单胞菌对Desferrichrome- 55 Fe的摄取还取决于通透酶FiuB的表达,这表明该蛋白是铁孢菌素的内膜转运蛋白。体内使用仿生荧光的铁铬酸酯类似物RL1194来实时监测铜绿假单胞菌中铁铬铁释放铁的动力学。这种解离涉及亚铁铬及其仿生类似物RL1194的酰化作用,以及将两种修饰的铁载体再循环到细胞外培养基中。 FiuC,一种N-乙酰基转移酶,肯定参与了铁释放的这种机制,因为它的突变消除了去铁铬- 55 Fe的吸收。乙酰化衍生物在细胞外培养基中与铁反应,并能再次被细胞吸收。根据有关铜绿假单胞菌和大肠杆菌中铬铁吸收的最新知识,讨论了所有这些观察结果。

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