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Recognition of DNA by Fur: a Reinterpretation of the Fur Box Consensus Sequence

机译:毛皮识别DNA:对毛皮盒共识序列的重新解释

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摘要

Ferric uptake repressor (Fur) proteins regulate the expression of iron homeostasis genes in response to intracellular iron levels. In general, Fur proteins bind with high affinity to a 19-bp inverted repeat sequence known as the Fur box. An alignment of 19 operator sites recognized by Bacillus subtilis Fur revealed a different conserved 15-bp (7-1-7) inverted repeat present twice within this 19-bp consensus sequence. We demonstrated using electrophoretic mobility shift assays that this 7-1-7 inverted repeat comprises a minimal recognition site for high-affinity binding by Fur. The resulting revised consensus sequence is remarkably similar to a related 7-1-7 inverted repeat sequence recognized by PerR, a Fur paralog. Our analysis of the affinity and stoichiometry of DNA binding by B. subtilis Fur, together with a reinterpretation of previously described studies of Escherichia coli Fur, supports a model in which the 19-bp Fur box represents overlapping recognition sites for two Fur dimers bound to opposite faces of the DNA helix. The resulting recognition complex is reminiscent of that observed for the functionally related protein DtxR. Like Fur, DtxR contains a helix-turn-helix DNA-binding motif, recognizes a 19-bp inverted repeat sequence, and has a typical DNase I footprint of ∼30 bp. By envisioning a similar mode of DNA recognition for Fur, we can account for the internal symmetries noted previously within the Fur box, the tendency of Fur to extend into adjacent regions of DNA in a sequence-selective manner, and the observed patterns of DNA protection against enzymatic and chemical probes.
机译:铁摄取抑制蛋白(Fur)响应细胞内铁水平调节铁稳态基因的表达。通常,Fur蛋白以高亲和力与19 bp的反向重复序列(称为Fur盒)结合。枯草芽孢杆菌识别的19个操作位点的比对揭示了一个不同的保守的15 bp(7-1-7)反向重复序列,在此19 bp共有序列中出现了两次。我们证明了使用电泳迁移率迁移分析,此7-1-7反向重复包含一个最小的识别位点,用于Fur的高亲和力结合。所得的经修订的共有序列与由Fur旁系同源物PerR识别的相关的7-1-7反向重复序列非常相似。我们对枯草芽孢杆菌Fur结合DNA的亲和力和化学计量的分析,以及对先前描述的大肠杆菌Fur的研究的重新解释,支持了一个模型,其中19 bp的Fur盒代表两个结合至其的Fur二聚体的重叠识别位点DNA螺旋的相对面。产生的识别复合物让人联想到功能相关蛋白DtxR的复合物。像Fur一样,DtxR包含一个螺旋-转-螺旋DNA结合基序,识别一个19 bp的反向重复序列,并且典型的DNase I足迹约为30 bp。通过设想对Fur进行类似的DNA识别方式,我们可以解释先前在Fur盒中指出的内部对称性,Fur以序列选择方式延伸到DNA相邻区域的趋势以及观察到的DNA保护模式反对酶和化学探针。

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