首页> 外文期刊>Molecular Microbiology >Iron-free pyoverdin binds to its outer membrane receptor FpvA in Pseudomonas aeruginosa: a new mechanism for membrane iron transport.
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Iron-free pyoverdin binds to its outer membrane receptor FpvA in Pseudomonas aeruginosa: a new mechanism for membrane iron transport.

机译:铜绿假单胞菌中无铁的pyoverdin与其外膜受体FpvA结合:膜铁运输的新机制。

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Under iron limitation, Pseudomonas aeruginosa secretes a fluorescent siderophore called pyoverdin, which, after complexing iron, is transported back into the cell via its outer membrane receptor FpvA. Previous studies demonstrated co-purification of FpvA with iron-free PaA and reported similar binding affinities of iron-free pyoverdin and ferric-pyoverdin to purified FpvA. The fluorescence resonance energy transfer between iron-free PaA and the FpvA receptor here reveals the existence of an FpvA-pyoverdin complex in P. aeruginosa in vivo, suggesting that the pyoverdin-loaded FpvA is the normal state of the receptor in the absence of iron. Using tritiated ferric-pyoverdin, it is shown that iron-free PaA binds to the outer membrane but is not taken up into the cell, and that in vitro and, presumably, in vivo ferric-pyoverdin displaces the bound iron-free pyoverdin on FpvA-PaA to form FpvA-PaA-Fe complexes. In vivo, the kinetics of formation of this FpvA-PaA-Fe complex are more than two orders of magnitude faster than in vitro and depend on the presence of TonB. In P. aeruginosa, two tonB genes have been identified (tonB1 and tonB2). TonB1 is directly involved in ferric-pyoverdin uptake, and TonB2 seems to be able partially to replace TonB1 in its role in iron acquisition. However, no effect of TonB1 or TonB2 on the apparent affinity of free pyoverdin to FpvA was observed, and a 17-fold difference was measured between the affinities of the two forms of pyoverdin (PaA and PaA-Fe) to FpvA in the absence of TonB1 or TonB2. The mechanism of iron uptake in P. aeruginosa via the pyoverdin pathway is discussed in view of these new findings.
机译:在铁的限制下,铜绿假单胞菌分泌一种称为pyoverdin的荧光铁载体,在络合铁后,通过其外膜受体FpvA转运回细胞。先前的研究表明FpvA与无铁的PaA共同纯化,并报道了无铁的pyoverdin和铁-pyoverdin与纯化的FpvA具有相似的结合亲和力。无铁的PaA和FpvA受体之间的荧光共振能量转移表明,铜绿假单胞菌体内存在FpvA-pyoverdin复合物,这表明在没有铁的情况下,载有pyoverdin的FpvA是受体的正常状态。 。使用tri化的铁-泛素,表明无铁的PaA结合到外膜,但没有被吸收到细胞中,并且在体外,大概在体内,铁-泛素置换了结合在FpvA上的无铁的泛素-PaA形成FpvA-PaA-Fe复合物。在体内,这种FpvA-PaA-Fe复合物的形成动力学比体外快两个数量级以上,并且取决于TonB的存在。在铜绿假单胞菌中,已鉴定出两个tonB基因(tonB1和tonB2)。 TonB1直接参与铁-泛黄素的吸收,而TonB2似乎能够部分替代TonB1在铁的摄取中的作用。然而,没有观察到TonB1或TonB2对游离pyoverdin对FpvA的表观亲和力的影响,并且在不存在Fyvdin的情况下,两种形式的pyoverdin(PaA和PaA-Fe)对FpvA的亲和力之间的差异为17倍TonB1或TonB2。鉴于这些新发现,讨论了通过pyoverdin途径在铜绿假单胞菌中摄取铁的机制。

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