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Annotation of Promoter Regions in Microbial Genomes Based on DNA Structural and Sequence Properties

机译:基于DNA结构和序列性质的微生物基因组中启动子区的注释

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Understanding the attributes that confer promoter activity is essential for gene regulation, gene prediction and sequence annotation. It is a challenging problem to detect promoter regions, either in silico or by experiments. In this report, we show that the stress induced DNA duplex destabilization sites (SIDD) in prokaryotic genomes under negative superhelical stresses, as occurs in vivo, are closely associated with specific promoter regions. When compared with DNA curvature, deformability, thermostability or sequence motif scores within the -10 region, SIDD is the most informative DNA property of promoter regions in the E. coli K12 genome. Our method using SIDD as a sole predictor performs better than other promoter prediction programs in detecting promoter sequences in E. coli or Bacillus subtilis. We show that, by combining SIDD properties with -10 motif scores in a linear discrimination function, one can achieve better than 80% accuracy in predicting promoter sequences.
机译:了解赋予启动子活性的属性对于基因调控,基因预测和序列注释至关重要。在硅或实验中检测启动子区域是一个具有挑战性的问题。在本报告中,我们表明,如体内发生的负过性应力下的原核基因组的应激诱导的DNA双链体稳定位点(SIDD)与特异性启动子区密切相关。与-10区内的DNA曲率,可变形性,热稳定性或序列基质分数相比,SIDD是大肠杆菌K12基因组中启动子区域的最佳DNA性能。我们使用SIDD作为唯一预测器的方法比在检测大肠杆菌或枯草芽孢杆菌中检测启动子序列中的其他启动子预测程序更好。我们表明,通过在线性辨别函数中将SIDD属性与-10主题分数组合,可以在预测启动子序列中实现优于80%的精度。

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