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Cis -motifs upstream of the transcription and translation initiation sites are effectively revealed by their positional disequilibrium in eukaryote genomes using frequency distribution curves

机译:使用频率分布曲线,通过它们的位置不平衡,通过它们的频率分布曲线在真核生物基因组中有效地揭示了转录和翻译引发位点上游的CIS -MOTIF

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Background The discovery of cis-regulatory motifs still remains a challenging task even though the number of sequenced genomes is constantly growing. Computational analyses using pattern search algorithms have been valuable in phylogenetic footprinting approaches as have expression profile experiments to predict co-occurring motifs. Surprisingly little is known about the nature of cis -regulatory element (CRE) distribution in promoters. Results In this paper we used the Motif Mapper open-source collection of visual basic scripts for the analysis of motifs in any aligned set of DNA sequences. We focused on promoter motif distribution curves to identify positional over-representation of DNA motifs. Using differentially aligned datasets from the model species Arabidopsis thaliana , Caenorhabditis elegans, Drosophila melanogaster and Saccharomyces cerevisiae , we convincingly demonstrated the importance of the position and orientation for motif discovery. Analysis with known CREs and all possible hexanucleotides showed that some functional elements gather close to the transcription and translation initiation sites and that elements other than the TATA-box motif are conserved between eukaryote promoters. While a high background frequency usually decreases the effectiveness of such an enumerative investigation, we improved our analysis by conducting motif distribution maps using large datasets. Conclusion This is the first study to reveal positional over-representation of CREs and promoter motifs in a cross-species approach. CREs and motifs shared between eukaryotic promoters support the observation that an eukaryotic promoter structure has been conserved throughout evolutionary time. Furthermore, with the information on positional enrichment of a motif or a known functional CRE, it is possible to get a more detailed insight into where an element appears to function. This in turn might accelerate the in depth examination of known and yet unknown cis -regulatory sequences in the laboratory.
机译:背景技术即使序列基因组的数量不断增长,CIS-Scentatory主题的发现仍然是一个具有挑战性的任务。使用模式搜索算法的计算分析在系统发育足迹方法中是有价值的,其具有表达剖面实验以预测共同发生的图案。令人惊讶的是,令人惊讶的是,关于启动子的CIS -Regulatory元素(CRE)分布的性质。结果在本文中,我们使用了Visual Basic脚本的Motif Mapper开源收集,用于分析任何对齐的DNA序列组中的图案。我们专注于推动者图案分布曲线来识别DNA主题的位置过度表示。使用来自模型物种拟南芥,Caenorhabditis elegans,果蝇黑素转酯和酿酒酵母的差异对齐数据集,我们令人信服地表明了主题发现的位置和方向的重要性。用已知的CRE分析和所有可能的己核苷酸表明,一些功能元素聚集在一起靠近转录和翻译引发位点,并且在真核生物启动子之间保守除了塔塔盒基序之外的元素。虽然高背景频率通常会降低这种枚举调查的有效性,但我们通过使用大型数据集进行图案分发贴图来改善我们的分析。结论这是第一次在跨物种方法中揭示CRES和启动子主题的位置过度代表性。在真核启动子之间共享的CRES和图案支持观察,即在整个进化时间内保守真核启动子结构。此外,通过关于主题富集的信息或已知的功能CRE的信息,可以获得更详细的洞察元素似乎运作的位置。这反过来可能会加速在实验室中已知和尚不明确的CIS-Regulatory序列的深度检查。

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