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首页> 外文期刊>Journal of Molecular Biology >Long-range correlations between DNA bending sites: relation to the structure and dynamics of nucleosomes.
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Long-range correlations between DNA bending sites: relation to the structure and dynamics of nucleosomes.

机译:DNA弯曲位点之间的远距离关联:与核小体的结构和动力学有关。

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It has been established that the precise positioning of nucleosomes on genomic DNA can be achieved, at least for a minority of them, through sequence-dependent processes. However, to what extent DNA sequences play a role in the positioning of the major part of nucleosomes is still debated. The aim of the present study is to examine to what extent long-range correlations (LRC) are related to the presence of nucleosomes. Using the wavelet transform technique, we perform a comparative analysis of the DNA text and of the corresponding bending profiles generated with curvature tables based on nucleosome positioning data. The exploration of a number of eukaryotic and bacterial genomes through the optics of the so-called wavelet transform microscope bp that separates two regimes of different LRC. Here, we focus on the existence of LRC in the small-scale regime (10-200 bp) which are actually observed in eukaryotic genomes, in contrast to their absence in eubacterial genomes. Analysis of viral DNA genomes shows that, like their host's genomes, eukaryotic viruses present LRC but eubacterial viruses do not. There is one exception for genomes of poxviruses (Vaccinia and Melamoplus sanguinipes) which do not replicate in the cell nucleus and do not exhibit LRC. No small-scale LRC are detected in the genomes of all examined RNA viruses, with the exception of retroviruses. These results together with the observation of LRC between particular sequence motifs known to participate in the formation of nucleosomes (e.g. AA dinucleotides) strongly suggest that the 10-200 bp LRC are a signature of the sequence-dependence of nucleosome positioning. Finally, we discuss possible interpretations of these LRC in terms of the physical mechanisms that might govern the positioning and the dynamics of the nucleosomes along the DNA chain through cooperative processes.
机译:已经确定,至少对于少数核糖体,可以通过依赖序列的过程实现核小体在基因组DNA上的精确定位。然而,DNA序列在核小体主要部分的定位中发挥何种作用尚有争议。本研究的目的是研究与核小体的存在相关的远距离相关性(LRC)。使用小波变换技术,我们对DNA文本和基于核小体定位数据的曲率表生成的相应弯曲轮廓进行了比较分析。通过所谓的小波变换显微镜bp的光学方法探索许多真核生物和细菌基因组,该方法将两个不同的LRC区域分开。在这里,我们关注的是在真核生物基因组中实际观察到的小范围(10-200 bp)LRC的存在,与之相反,在真细菌基因组中却不存在。病毒DNA基因组的分析表明,真核病毒与其宿主基因组一样,都具有LRC,而真细菌病毒则没有。痘病毒(牛痘和黑加仑)的基因组有一个例外,它们不能在细胞核中复制并且不表现出LRC。除逆转录病毒外,在所有检查的RNA病毒的基因组中均未检测到小规模的LRC。这些结果与对已知参与核小体形成(例如AA二核苷酸)的特定序列基序之间的LRC的观察强烈地表明10-200bp LRC是核小体定位的序列依赖性的标志。最后,我们从物理机制的角度讨论了这些LRC的可能解释,这些物理机制可能通过协作过程控制着沿着DNA链的核小体的定位和动力学。

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