【2h】

Nucleosome Positioning

机译:核小体定位

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摘要

Nucleosome positioning is not only related to genomic DNA compaction but also to other biological functions. After the chromatin is digested by micrococcal nuclease, nucleosomal (nucleosome-bound) DNA fragments can be sequenced and mapped on the genomic DNA sequence. Due to the development of modern DNA sequencing technology, genome-wide nucleosome mapping has been performed in a wide range of eukaryotic species. Comparative analyses of the nucleosome positions have revealed that the nucleosome is more frequently formed in exonic than intronic regions, and that most of transcription start and translation (or transcription) end sites are located in nucleosome linker DNA regions, indicating that nucleosome positioning influences transcription initiation, transcription termination, and gene splicing. In addition, nucleosomal DNA contains guanine and cytosine (G + C)-rich sequences and a high level of cytosine methylation. Thus, the nucleosome positioning system has been conserved during eukaryotic evolution.
机译:核小体的定位不仅与基因组DNA压缩有关,而且与其他生物学功能有关。通过微球菌核酸酶消化染色质后,可以对核小体(与核小体结合)的DNA片段进行测序,并将其定位在基因组DNA序列上。由于现代DNA测序技术的发展,已经在各种真核生物中进行了全基因组的核小体作图。对核小体位置的比较分析表明,核小体在外显子中比内含子区域更频繁地形成,并且大多数转录起始和翻译(或转录)末端位点位于核小体接头DNA区域中,表明核小体的定位影响转录起始,转录终止和基因剪接。另外,核小体DNA包含鸟嘌呤和胞嘧啶(G + C)丰富的序列和高水平的胞嘧啶甲基化。因此,在真核生物进化过程中,核小体的定位系统已被保留。

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