首页> 外文期刊>International Journal of Genomics >Periodic Distribution of a Putative Nucleosome Positioning Motif in Human, Nonhuman Primates, and Archaea: Mutual Information Analysis
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Periodic Distribution of a Putative Nucleosome Positioning Motif in Human, Nonhuman Primates, and Archaea: Mutual Information Analysis

机译:在人类,非人类的灵长类动物和古细菌中假定的核小体定位母题的周期性分布:相互信息分析。

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Recently, Trifonov's group proposed a 10-mer DNA motif YYYYYRRRRR as a solution of the long-standing problem of sequence-based nucleosome positioning. To test whether this generic decamer represents a biological meaningful signal, we compare the distribution of this motif in primates and Archaea, which are known to contain nucleosomes, and in Eubacteria, which do not possess nucleosomes. The distribution of the motif is analyzed by the mutual information function (MIF) with a shifted version of itself (MIF profile). We found common features in the patterns of this generic decamer on MIF profiles among primate species, and interestingly we found conspicuous but dissimilar MIF profiles for each Archaea tested. The overall MIF profiles for each chromosome in each primate species also follow a similar pattern. Trifonov's generic decamer may be a highly conserved motif for the nucleosome positioning, but we argue that this is not the only motif. The distribution of this generic decamer exhibits previously unidentified periodicities, which are associated to highly repetitive sequences in the genome. Alu repetitive elements contribute to the most fundamental structure of nucleosome positioning in higher Eukaryotes. In some regions of primate chromosomes, the distribution of the decamer shows symmetrical patterns including inverted repeats.
机译:最近,Trifonov研究小组提出了一种10-mer DNA基序YYYYYRRRRR,以解决基于序列的核小体定位这一长期存在的问题。为了测试此通用decamer是否代表生物学有意义的信号,我们比较了该基序在灵长类动物和古细菌中的分布,已知它们包含核小体,而在真细菌中则不具有核小体。主题的分布通过互信息功能(MIF)以及自身的偏移版本(MIF配置文件)进行分析。我们在灵长类动物的MIF谱图上发现了这种通用decamer模式的共同特征,有趣的是,对于每个被测古细菌,我们发现了明显但相异的MIF谱图。每个灵长类物种中每个染色体的总体MIF图谱也遵循相似的模式。 Trifonov的通用decamer可能是核小体定位的高度保守的基序,但是我们认为这不是唯一的基序。该通用十聚体的分布表现出先前未确定的周期性,其与基因组中高度重复的序列有关。 Alu重复元件是高等真核生物中核小体定位的最基本结构。在灵长类染色体的某些区域中,十聚体的分布显示出包括反向重复的对称模式。

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