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Stress-Induced DNA Duplex Destabilization (SIDD) in the E. coli Genome: SIDD Sites Are Closely Associated With Promoters

机译:大肠杆菌基因组中的压力诱导DNA双链失稳(SIDD):SIDD位点与启动子密切相关

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摘要

We present the first analysis of stress-induced DNA duplex destabilization (SIDD) in a complete chromosome, the Escherichia coli K12 genome. We used a newly developed method to calculate the locations and extents of stress-induced destabilization to single-base resolution at superhelix density σ = –0.06. We find that SIDD sites in this genome show a statistically highly significant tendency to avoid coding regions. And among intergenic regions, those that either contain documented promoters or occur between divergently transcribing coding regions, and hence may be inferred to contain promoters, are associated with strong SIDD sites in a statistically highly significant manner. Intergenic regions located between convergently transcribing genes, which are inferred not to contain promoters, are not significantly enriched for destabilized sites. Statistical analysis shows that a strongly destabilized intergenic region has an 80% chance of containing a promoter, whereas an intergenic region that does not contain a strong SIDD site has only a 24% chance. We describe how these observations may illuminate specific mechanisms of regulation, and assist in the computational identification of promoter locations in prokaryotes.
机译:我们介绍了在完整的染色体,大肠杆菌K12基因组中的压力诱导的DNA双链失稳(SIDD)的首次分析。我们使用一种新开发的方法来计算在超螺旋密度σ= –0.06时,应力引起的去稳定化至单碱基分辨率的位置和程度。我们发现该基因组中的SIDD位点显示出统计学上高度重要的趋势,以避免编码区域。在基因间区域中,那些含有已记录的启动子或发生在不同转录的编码区域之间的基因区域,因此可以推断为含有启动子,这些区域以统计学上高度重要的方式与强大的SIDD位点相关。位于聚合转录基因之间的基因间区域(据推测不含启动子)并未显着富集不稳定位点。统计分析表明,高度不稳定的基因间区域有80%的机会包含启动子,而不包含强SIDD位点的基因间区域只有24%的机会。我们描述了这些观察结果如何阐明特定的调节机制,并有助于原核生物中启动子位置的计算鉴定。

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