首页> 外文期刊>Nucleic Acids Research >Activation-induced disruption of nucleosome position clusters on the coding regions of Gcn4-dependent genes extends into neighbouring genes
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Activation-induced disruption of nucleosome position clusters on the coding regions of Gcn4-dependent genes extends into neighbouring genes

机译:Gcn4依赖基因的编码区域上的激活诱导的核小体位置簇的破坏扩展到邻近的基因。

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We have used paired-end sequencing of yeast nucleosomal DNA to obtain accurate genomic maps of nucleosome positions and occupancies in control cells and cells treated with 3-aminotriazole (3AT), an inducer of the transcriptional activator Gcn4. In control cells, 3AT-inducible genes exhibit a series of distinct nucleosome occupancy peaks. However, the underlying position data reveal that each nucleosome peak actually consists of a cluster of mutually exclusive overlapping positions, usually including a dominant position. Thus, each nucleosome occupies one of several possible positions and consequently, different cells have distinct local chromatin structures. Induction results in a major disruption of nucleosome positioning, sometimes with altered spacing and a dramatic loss of occupancy over the entire gene, often extending into a neighbouring gene. Nucleosome-depleted regions are generally unaffected. Genes repressed by 3AT show the same changes, but in reverse. We propose that yeast genes exist in one of several alternative nucleosomal arrays, which are disrupted by activation. We conclude that activation results in gene-wide chromatin remodelling and that this remodelling can even extend into the chromatin of flanking genes.
机译:我们已经使用了酵母核糖体DNA的双端测序来获得核糖体位置和占有率的准确基因组图,这是对照细胞和用3-氨基三唑(3AT)(转录激活因子Gcn4的诱导剂)处理过的细胞中的占有率。在对照细胞中,3AT诱导型基因表现出一系列不同的核小体占用峰。然而,基础位置数据揭示了每个核小体峰实际上由相互排斥的重叠位置组成,通常包括一个主导位置。因此,每个核小体占据几个可能的位置之一,因此,不同的细胞具有不同的局部染色质结构。诱导导致核小体定位的重大破坏,有时会导致间隔改变,并且整个基因的占有率急剧下降,通常会延伸到邻近的基因中。核小体耗尽的区域通常不受影响。受3AT抑制的基因显示相同的变化,但相反。我们建议酵母基因存在于几个替代核小体阵列之一,被激活破坏。我们得出结论,激活会导致全基因染色质重塑,而且这种重塑甚至可以扩展到侧翼基因的染色质中。

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