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Binding of Pseudomonas aeruginosa Apobacterioferritin-Associated Ferredoxin to Bacterioferritin B Promotes Heme Mediation of Electron Delivery and Mobilization of Core Mineral Iron

机译:铜绿假单胞菌载脂铁蛋白相关的铁氧还蛋白与细菌铁蛋白B的结合促进血红素介导电子传递和核心矿物质铁的动员。

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摘要

The bfrB gene from Pseudomonas aeruginosa was cloned and expressed in Escherichia coli. The resultant protein (BfrB), which assembles into a 445.3 kDa complex from 24 identical subunits, binds 12 molecules of heme axially coordinated by two Met residues. BfrB, isolated with 5-10 iron atoms per protein molecule, was reconstituted with ferrous ions to prepare samples with a core mineral containing 600 ᠴ0 ferric ions per BfrB molecule and approximately one phosphate molecule per iron atom. In the presence of sodium dithionite or in the presence of P. aeruginosa ferredoxin NADP reductase (FPR) and NADPH, the heme in BfrB remains oxidized, and the core iron mineral is mobilized sluggishly. In stark contrast, addition of NADPH to a solution containing BfrB, FPR, and the apo form of P. aeruginosa bacterioferritin-associated ferredoxin (apo-Bfd) results in rapid reduction of the heme in BfrB and in the efficient mobilization of the core iron mineral. Results from additional experimentation indicate that Bfd must bind to BfrB to promote heme mediation of electrons from the surface to the core to support the efficient mobilization of ferrous ions from BfrB. In this context, the thus far mysterious role of heme in bacterioferritins has been brought to the front by reconstituting BfrB with its physiological partner, apo-Bfd. These findings are discussed in the context of a model for the utilization of stored iron in which the significant upregulation of the bfd gene under low-iron conditions [Ochsner, U. A., Wilderman, P. J., Vasil, A. I., and Vasil, M. L. (2002) Mol. Microbiol. 45, 1277-1287] ensures sufficient concentrations of apo-Bfd to bind BfrB and unlock the iron stored in its core. Although these findings are in contrast to previous speculations suggesting redox mediation of electron transfer by holo-Bfd, the ability of apo-Bfd to promote iron mobilization is an economical strategy used by the cell because it obviates the need to further deplete cellular iron levels to assemble iron-sulfur clusters in Bfd before the iron stored in BfrB can be mobilized and utilized.
机译:克隆了铜绿假单胞菌的bfrB基因并在大肠杆菌中表达。所得的蛋白质(BfrB)由24个相同的亚基组装成445.3 kDa的复合物,结合了由两个Met残基轴向配位的12个血红素分子。将每个蛋白质分子中含有5-10个铁原子的BfrB用亚铁离子重构,以制备具有核心矿物质的样品,其中每个BfrB分子含600ᠴ0铁离子,每个铁原子约含一个磷酸盐分子。在连二亚硫酸钠存在或铜绿假单胞菌铁氧还蛋白NADP还原酶(FPR)和NADPH的存在下,BfrB中的血红素仍被氧化,并且核心铁矿物质缓慢地动员。与之形成鲜明对比的是,向含有BfrB,FPR和铜绿假单胞菌细菌铁蛋白相关的铁氧还蛋白(apo-Bfd)的载脂蛋白形式的溶液中添加NADPH会导致BfrB中血红素的快速减少和核心铁的有效动员矿物。其他实验的结果表明,Bfd必须与BfrB结合,以促进电子从表面到核心的血红素介导,以支持从BfrB有效地转移亚铁离子。在这种情况下,迄今为止,血红素在细菌铁蛋白中的神秘作用已通过将BfrB与它的生理伴侣apo-Bfd重组而浮出水面。这些发现是在利用铁存储模型的背景下讨论的,在该模型中,低铁条件下bfd基因的显着上调[Ochsner,UA,Wilderman,PJ,Vasil,AI,和Vasil,ML(2002)大声笑微生物。 45,1277-1287]确保足够的apo-Bfd浓度结合BfrB并解锁储存在其核心中的铁。尽管这些发现与先前的推测暗示了通过全息Bfd进行电子转移的氧化还原介导相反,但载脂蛋白Bfd促进铁动员的能力是该细胞使用的经济策略,因为它消除了进一步消耗细胞铁水平至在动员并利用BfrB中存储的铁之前,先在Bfd中组装铁硫簇。

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