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The nucleosome position-encoding WW/SS sequence pattern is depleted in mammalian genes relative to other eukaryotes

机译:编码核心的定位序列模式在哺乳动物基因中相对于其他真核生物耗尽

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摘要

Nucleosomal DNA sequences generally follow a well-known pattern with similar to 10-bp periodic WW (where W is A or T) dinucleotides that oscillate in phase with each other and out of phase with SS (where S is G or C) dinucleotides. However, nucleosomes with other DNA patterns have not been systematically analyzed. Here, we focus on an opposite pattern, namely anti-WW/SS pattern, in which WW dinucleotides preferentially occur at DNA sites that bend into major grooves and SS (where S is G or C) dinucleotides are often found at sites that bend into minor grooves. Nucleosomes with the anti-WW/SS pattern are widespread and exhibit a species- and context-specific distribution in eukaryotic genomes. Unlike non-mammals (yeast, nematode and fly), there is a positive correlation between the enrichment of anti-WW/SS nucleosomes and RNA Pol II transcriptional levels in mammals (mouse and human). Interestingly, such enrichment is not due to underlying DNA sequence. In addition, chromatin remodeling complexes have an impact on the abundance but not on the distribution of anti-WW/SS nucleosomes in yeast. Our data reveal distinct roles of cis- and trans-acting factors in the rotational positioning of nucleosomes between non-mammals and mammals. Implications of the anti-WW/SS sequence pattern for RNA Pol II transcription are discussed.
机译:核体DNA序列通常遵循众所周知的图案,其具有类似于10-BP周期性的(其中W是A或T)二核苷酸,其彼此相互作用,并且用SS(其中S是G或C)二核苷酸异相异相。然而,尚未系统地分析具有其他DNA模式的核体。这里,我们专注于相反的模式,即抗WW / SS模式,其中优先发生在弯曲成主要凹槽的DNA位点的WW二核苷酸,并且通常在弯曲进入的位置处发现二核苷酸的二核苷酸的DNA位点(其中S为G或C)二核苷酸较小的凹槽。具有抗WW / SS图案的核体是广泛的,并且在真核基因组中表现出特异性和上下文特异性分布。与非哺乳动物(酵母,线虫和飞行)不同,抗WW / SS核肉和RNA POL II转录水平的富集在哺乳动物(小鼠和人)之间存在正相关性。有趣的是,这种富集不是由于底层DNA序列。此外,染色质重塑复合物对丰度产生影响,但不对酵母中的抗WW / SS核肉分布的影响。我们的数据揭示了CIS-和杂志的不同作用在非哺乳动物和哺乳动物之间核心旋转定位中的不同作用。讨论了抗WW / SS序列模式对RNA POL II转录的影响。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第15期|共13页
  • 作者

    Wright Gregory M.; Cui Feng;

  • 作者单位

    Rochester Inst Technol Thomas H Gosnell Sch Life Sci 85 Lomb Mem Dr Rochester NY 14623 USA;

    Rochester Inst Technol Thomas H Gosnell Sch Life Sci 85 Lomb Mem Dr Rochester NY 14623 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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