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High-Affinity Quasi-Specific Sites in the Genome: How the DNA-Binding Proteins Cope with Them

机译:基因组中的高亲和力准特异性位点:DNA结合蛋白如何应对它们

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摘要

Many prokaryotic transcription factors home in on one or a few target sites in the presence of a huge number of nonspecific sites. Our analysis of λ-repressor in the Escherichia coli genome based on single basepair substitution experiments shows the presence of hundreds of sites having binding energy within 3 Kcal/mole of the OR1 binding energy, and thousands of sites with binding energy above the nonspecific binding energy. The effect of such sites on DNA-based processes has not been fully explored. The presence of such sites dramatically lowers the occupation probability of the specific site far more than if the genome were composed of nonspecific sites only. Our Brownian dynamics studies show that the presence of quasi-specific sites results in very significant kinetic effects as well. In contrast to λ-repressor, the E. coli genome has orders of magnitude lower quasi-specific sites for GalR, an integral transcription factor, thus causing little competition for the specific site. We propose that GalR and perhaps repressors of the same family have evolved binding modes that lead to much smaller numbers of quasi-specific sites to remove the untoward effects of genomic DNA.
机译:在存在大量非特异性位点的情况下,许多原核转录因子位于一个或几个目标位点。我们基于单碱基对替代实验对大肠杆菌基因组中λ阻遏物的分析表明,存在数百个结合能在OR1结合能的3 Kcal / mol内的结合位点,以及数千个结合能高于非特异性结合能的结合位点。此类位点对基于DNA的过程的影响尚未得到充分研究。与基因组仅由非特异性位点组成的情况相比,此类位点的存在大大降低了特定位点的占用概率。我们的布朗动力学研究表明,准特定位点的存在也会导致非常显着的动力学效果。与λ阻遏物相反,大肠杆菌基因组的GalR是一个完整的转录因子,其准特异性位点的数量级较低,因此几乎没有针对该特异性位点的竞争。我们建议GalR和同一个家族的阻遏物已经进化出结合模式,从而导致数量更少的准特异性位点消除了基因组DNA的不利影响。

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