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Eukaryotic HMGB proteins as replacements for HU in E. coli repression loop formation

机译:真核HMGB蛋白可替代大肠杆菌抑制环形成中的HU

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DNA looping is important for gene repression and activation in Escherichia coli and is necessary for some kinds of gene regulation and recombination in eukaryotes. We are interested in sequence-nonspecific architectural DNA-binding proteins that alter the apparent flexibility of DNA by producing transient bends or kinks in DNA. The bacterial heat unstable (HU) and eukaryotic high-mobility group B (HMGB) proteins fall into this category. We have exploited a sensitive genetic assay of DNA looping in living E. coli cells to explore the extent to which HMGB proteins and derivatives can complement a DNA looping defect in E. coli lacking HU protein. Here, we show that derivatives of the yeast HMGB protein Nhp6A rescue DNA looping in E. coli lacking HU, in some cases facilitating looping to a greater extent than is observed in E. coli expressing normal levels of HU protein. Nhp6A-induced changes in the DNA length-dependence of repression efficiency suggest that Nhp6A alters DNA twist in vivo. In contrast, human HMGB2-box A derivatives did not rescue looping.
机译:DNA环化对于大肠杆菌中的基因阻遏和激活很重要,对于真核生物中某些基因的调控和重组也是必需的。我们对序列非特异性建筑DNA结合蛋白感兴趣,这些蛋白通过在DNA中产生瞬时弯曲或扭结来改变DNA的表观柔韧性。细菌热不稳定(HU)和真核高迁移率B组(HMGB)蛋白属于此类。我们已经利用活的大肠杆菌细胞中DNA环的敏感性遗传测定方法来探索HMGB蛋白和衍生物可以补充缺少HU蛋白的大肠杆菌中的DNA环缺陷的程度。在这里,我们显示了酵母HMGB蛋白Nhp6A的衍生物在缺乏HU的大肠杆菌中拯救了DNA环,在某些情况下,其环化程度比在表达正常水平的HU蛋白的大肠杆菌中更大。 Nhp6A诱导的DNA长度依赖性抑制效率的变化表明Nhp6A改变了体内DNA的扭曲。相比之下,人类HMGB2-box A衍生物无法挽救循环。

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