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Nullomers and High Order Nullomers in Genomic Sequences

机译:Nullomer和高阶Nullomers基因组序列

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摘要

A nullomer is an oligomer that does not occur as a subsequence in a given DNA sequence, i.e. it is an absent word of that sequence. The importance of nullomers in several applications, from drug discovery to forensic practice, is now debated in the literature. Here, we investigated the nature of nullomers, whether their absence in genomes has just a statistical explanation or it is a peculiar feature of genomic sequences. We introduced an extension of the notion of nullomer, namely high order nullomers, which are nullomers whose mutated sequences are still nullomers. We studied different aspects of them: comparison with nullomers of random sequences, CpG distribution and mean helical rise. In agreement with previous results we found that the number of nullomers in the human genome is much larger than expected by chance. Nevertheless antithetical results were found when considering a random DNA sequence preserving dinucleotide frequencies. The analysis of CpG frequencies in nullomers and high order nullomers revealed, as expected, a high CpG content but it also highlighted a strong dependence of CpG frequencies on the dinucleotide position, suggesting that nullomers have their own peculiar structure and are not simply sequences whose CpG frequency is biased. Furthermore, phylogenetic trees were built on eleven species based on both the similarities between the dinucleotide frequencies and the number of nullomers two species share, showing that nullomers are fairly conserved among close species. Finally the study of mean helical rise of nullomers sequences revealed significantly high mean rise values, reinforcing the hypothesis that those sequences have some peculiar structural features. The obtained results show that nullomers are the consequence of the peculiar structure of DNA (also including biased CpG frequency and CpGs islands), so that the hypermutability model, also taking into account CpG islands, seems to be not sufficient to explain nullomer phenomenon. Finally, high order nullomers could emphasize those features that already make simple nullomers useful in several applications.
机译:无效单体是在给定的DNA序列中不作为子序列出现的寡聚物,即它是该序列的缺失词。从药物发现到法医实践,零聚物在多种应用中的重要性现在在文献中受到争议。在这里,我们调查了空聚体的性质,无论它们在基因组中的缺失仅仅是统计学上的解释,还是基因组序列的独特特征。我们引入了零聚物概念的扩展,即高阶零聚物,它们是突变序列仍为零聚物的零聚物。我们研究了它们的不同方面:与随机序列的空位单体比较,CpG分布和平均螺旋上升。与先前的结果一致,我们发现人类基因组中的空单体的数量比偶然预期的要大得多。然而,当考虑保留二核苷酸频率的随机DNA序列时,发现了相反的结果。对零聚物和高级零聚物中CpG频率的分析表明,正如所预期的那样,CpG含量较高,但同时也突出了CpG频率对二核苷酸位置的强烈依赖性,这表明零聚物具有自己独特的结构,而不仅仅是其CpG的序列频率有偏差。此外,基于二核苷酸频率之间的相似性和两个物种共有的无效单体的数量,在11个物种上建立了系统发育树,这表明无效单体在近缘物种中相当保守。最后,对零聚物序列的平均螺旋上升的研究显示出明显较高的平均上升值,从而强化了这些序列具有某些特殊结构特征的假设。获得的结果表明,零聚物是DNA特殊结构的结果(还包括偏向的CpG频率和CpGs岛),因此考虑到CpG岛的超变异性模型似乎不足以解释零聚物现象。最后,高阶零聚物可能会强调那些已经使简单零聚物在某些应用中有用的特征。

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