Müller K, Matzanke B F, Schünemann V, Trautwein A X, Hantke K
Universität Tübingen, Germany.
Eur J Biochem. 1998 Dec 15;258(3):1001-8. doi: 10.1046/j.1432-1327.1998.2581001.x.
We previously used fhuF as a sensitive reporter gene of the iron status of Escherichia coli. In this report, the fhuF gene was identified as open reading frame f262b at 99.2 min on the genome sequence map of E. coli K-12. The FhuF protein was labeled with a His-tag and then purified to electrophoretic homogeneity. Based on sulfur determinations and Mössbauer and EPR spectroscopy, FhuF was identified as a [2Fe-2S] protein. The g values (gx = 1.886, gy = 1.961, gz = 1.994) and some of the Mössbauer parameters of FhuF obtained [oxidized protein as isolated: delta EQ,4.2K = 0.474 mm s-1; Fe3+ (reduced protein): delta EQ = 0.978 mm s-1] are not typical of common [2Fe-2S] proteins and indicate that FhuF has unusual structural properties. The primary sequence of FhuF does not show any sequence similarities to known [2Fe-2S] proteins. By site-directed mutagenesis, each of the six cysteines of FhuF was replaced by serine. EPR of the six reduced mutant proteins revealed that the terminal cysteine residues 244, 245, 256, and 259 form the [2Fe-2S]Cys4 cluster. Mutants having the Cys-to-Ser replacement at positions 244, 245, 256, or 259 did not complement a fhuF mutant. The motif Cys-Cys-Xaa10-Cys-Xaa2-Cys in FhuF differs considerably from the motif Cys-Xaa2-Cys-Xaa9-15-Cys-Xaa2-Cys found in other [2Fe-2S] proteins. The unusual Cys-Cys terminal group of the cluster may explain the atypical EPR and Mössbauer spectroscopic properties of the FhuF protein; possibly the tetrahedral symmetry at the ferric ion site is distorted. The phenotype of fhuF mutants and the structural features of the FhuF protein suggest that FhuF is involved in the reduction of ferric iron in cytoplasmic ferrioxamine B.
我们之前将fhuF用作大肠杆菌铁状态的敏感报告基因。在本报告中,fhuF基因在大肠杆菌K-12基因组序列图上99.2分钟处被鉴定为开放阅读框f262b。FhuF蛋白用His标签标记,然后纯化至电泳纯。基于硫测定以及穆斯堡尔谱和电子顺磁共振光谱,FhuF被鉴定为一种[2Fe-2S]蛋白。FhuF的g值(gx = 1.886,gy = 1.961,gz = 1.994)以及获得的一些穆斯堡尔参数[分离出的氧化蛋白:δEQ,4.2K = 0.474 mm s-1;Fe3+(还原蛋白):δEQ = 0.978 mm s-1]并非常见[2Fe-2S]蛋白的典型值,表明FhuF具有不同寻常的结构特性。FhuF的一级序列与已知的[2Fe-2S]蛋白没有任何序列相似性。通过定点诱变,FhuF的六个半胱氨酸中的每一个都被丝氨酸取代。六种还原突变蛋白的电子顺磁共振显示,末端半胱氨酸残基244、245、256和259形成了[2Fe-2S]Cys4簇。在位置244、245、256或259处半胱氨酸被丝氨酸取代的突变体不能互补fhuF突变体。FhuF中的基序Cys-Cys-Xaa10-Cys-Xaa2-Cys与其他[2Fe-2S]蛋白中发现的基序Cys-Xaa2-Cys-Xaa9-15-Cys-Xaa2-Cys有很大差异。该簇不寻常的Cys-Cys末端基团可能解释了FhuF蛋白非典型的电子顺磁共振和穆斯堡尔光谱特性;可能铁离子位点的四面体对称性发生了扭曲。fhuF突变体的表型和FhuF蛋白的结构特征表明,FhuF参与了细胞质中铁转运铁蛋白B中铁离子的还原过程。