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铜绿假单胞菌中铁载体摄取的实时荧光共振能量转移可视化。亚铁的作用。

Real time fluorescent resonance energy transfer visualization of ferric pyoverdine uptake in Pseudomonas aeruginosa. A role for ferrous iron.

作者信息

Greenwald Jason, Hoegy Françoise, Nader Mirella, Journet Laure, Mislin Gaëtan L A, Graumann Peter L, Schalk Isabelle J

机构信息

Métaux et Microorganismes: Chimie, Biologie, et Applications, UMR 7175-LC1 Institut Gilbert-Laustriat, CNRS-Université Louis Pasteur, ESBS, Boulevard Sébastien Brant, F-67413 Illkirch, Strasbourg, France.

出版信息

J Biol Chem. 2007 Feb 2;282(5):2987-95. doi: 10.1074/jbc.M609238200. Epub 2006 Dec 5.

Abstract

To acquire iron, Pseudomonas aeruginosa secretes a major fluorescent siderophore, pyoverdine (PvdI), that chelates iron and shuttles it into the cells via the specific outer membrane transporter, FpvAI. We took advantage of the fluorescence properties of PvdI and its metal chelates as well as the efficient FRET between donor tryptophans in FpvAI and PvdI to follow the fate of the siderophore during iron uptake. Our findings with PvdI-Ga and PvdI-Cr uptake indicate that iron reduction is required for the dissociation of PvdI-Fe, that a ligand exchange for iron occurs, and that this dissociation occurs in the periplasm. We also observed a delay between PvdI-Fe dissociation and the rebinding of PvdI to FpvAI, underlining the kinetic independence of metal release and siderophore recycling. Meanwhile, PvdI is not modified but recycled to the medium, still competent for iron chelation and transport. Finally, in vivo fluorescence microscopy revealed patches of PvdI, suggesting that uptake occurs via macromolecular assemblies on the cell surface.

摘要

为获取铁元素,铜绿假单胞菌分泌一种主要的荧光铁载体——绿脓菌素(PvdI),它能螯合铁并通过特异性外膜转运蛋白FpvAI将其转运到细胞内。我们利用了PvdI及其金属螯合物的荧光特性,以及FpvAI中供体色氨酸与PvdI之间高效的荧光共振能量转移(FRET)来追踪铁摄取过程中铁载体的命运。我们对PvdI-Ga和PvdI-Cr摄取的研究结果表明,PvdI-Fe的解离需要铁还原,会发生铁的配体交换,且这种解离发生在周质中。我们还观察到PvdI-Fe解离与PvdI重新结合到FpvAI之间存在延迟,这突出了金属释放和铁载体循环的动力学独立性。同时,PvdI未被修饰而是循环回到培养基中,仍然具有铁螯合和转运能力。最后,体内荧光显微镜检查显示有PvdI斑块,表明摄取是通过细胞表面的大分子组装体进行的。

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