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Genomic analysis of DNA binding and gene regulation by homologous nucleoid-associated proteins IHF and HU in Escherichia coli K12

机译:大肠杆菌K12中同源核苷酸相关蛋白IHF和HU的DNA结合和基因调控的基因组分析

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摘要

IHF and HU are two heterodimeric nucleoid-associated proteins (NAP) that belong to the same protein family but interact differently with the DNA. IHF is a sequence-specific DNA-binding protein that bends the DNA by over 160°. HU is the most conserved NAP, which binds non-specifically to duplex DNA with a particular preference for targeting nicked and bent DNA. Despite their importance, the in vivo interactions of the two proteins to the DNA remain to be described at a high resolution and on a genome-wide scale. Further, the effects of these proteins on gene expression on a global scale remain contentious. Finally, the contrast between the functions of the homo- and heterodimeric forms of proteins deserves the attention of further study. Here we present a genome-scale study of HU- and IHF binding to the Escherichia coli K12 chromosome using ChIP-seq. We also perform microarray analysis of gene expression in single- and double-deletion mutants of each protein to identify their regulons. The sequence-specific binding profile of IHF encompasses ∼30% of all operons, though the expression of <10% of these is affected by its deletion suggesting combinatorial control or a molecular backup. The binding profile for HU is reflective of relatively non-specific binding to the chromosome, however, with a preference for A/T-rich DNA. The HU regulon comprises highly conserved genes including those that are essential and possibly supercoiling sensitive. Finally, by performing ChIP-seq experiments, where possible, of each subunit of IHF and HU in the absence of the other subunit, we define genome-wide maps of DNA binding of the proteins in their hetero- and homodimeric forms.
机译:IHF和HU是两个异二聚核苷酸相关蛋白(NAP),它们属于同一蛋白家族,但与DNA的相互作用不同。 IHF是一种序列特异性DNA结合蛋白,可将DNA弯曲超过160°。 HU是最保守的NAP,它与双链DNA非特异性结合,特别适合靶向切口和弯曲的DNA。尽管它们很重要,但两种蛋白与DNA的体内相互作用仍有待在高分辨率和全基因组范围内进行描述。此外,这些蛋白质在全球范围内对基因表达的影响仍然存在争议。最后,蛋白质的同二聚体和异二聚体形式的功能之间的对比值得进一步研究。在这里,我们介绍了使用ChIP-seq对HU-和IHF结合大肠杆菌K12染色体的基因组规模研究。我们还对每种蛋白质的单缺失和双缺失突变体中的基因表达进行微阵列分析,以鉴定其调节子。 IHF的序列特异性结合谱涵盖了所有操纵子的约30%,尽管其中少于10%的表达受到其缺失的影响,这暗示了组合控制或分子后备。 HU的结合概况反映了相对非特异性结合至染色体,但是优选富含A / T的DNA。 HU regulon包含高度保守的基因,包括必不可少的基因,可能对超螺旋敏感。最后,通过在可能的情况下在不存在其他亚基的情况下,对IHF和HU的每个亚基进行ChIP-seq实验,我们定义了蛋白质的异源和同二聚体形式的DNA结合的全基因组图。

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