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首页> 外文期刊>Genome research >A barrier nucleosome model for statistical positioning of nucleosomes throughout the yeast genome.
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A barrier nucleosome model for statistical positioning of nucleosomes throughout the yeast genome.

机译:用于整个酵母基因组中核小体统计定位的屏障核小体模型。

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Most nucleosomes are well-organized at the 5' ends of S. cerevisiae genes where -1 nucleosomal organization is specified by the genome is less clear. Here we establish and inter-relate rules governing genomic nucleosome organization by sequencing DNA from more than one million immunopurified S. cerevisiae nucleosomes (displayed at http://atlas.bx.psu.edu/). Evidence is presented that the organization of nucleosomes throughout genes is largely a consequence of statistical packing principles. The genomic sequence specifies the location of the -1 and +1 nucleosomes. The +1 nucleosome forms a barrier against which nucleosomes are packed, resulting in uniform positioning, which decays at farther distances from the barrier. We present evidence for a novel 3' NFR that is present at 95% of all genes. 3' NFRs may be important for transcription termination and anti-sense initiation. We present a high-resolution genome-wide map of TFIIB locations that implicates 3' NFRs in gene looping.
机译:大多数核小体在酿酒酵母基因的5'端组织良好,其中由基因组指定的-1核小体组织不清楚。在这里,我们通过对来自超过一百万个免疫纯化啤酒酵母核小体(显示在http://atlas.bx.psu.edu/)上的DNA进行测序,建立并关联了控制基因组核小体组织的规则。证据表明,整个基因中核小体的组织很大程度上是统计学包装原理的结果。基因组序列指定了-1和+1核小体的位置。 +1核小体形成一个屏障,核小体针对该屏障进行堆积,从而导致均匀定位,该定位在距该屏障更远的距离处衰减。我们提出了一种新颖的3'NFR的证据,该基因存在于所有基因的> 95%。 3′NFR对于转录终止和反义起始可能是重要的。我们提出了高分辨率的全基因组的TFIIB位置图,牵连在基因环中的3'NFRs。

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