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Extensive chromatin fragmentation improves enrichment of protein binding sites in chromatin immunoprecipitation experiments

机译:广泛的染色质片段化可改善染色质免疫沉淀实验中蛋白质结合位点的富集

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摘要

Extensive sonication of formaldehyde-crosslinked chromatin can generate DNA fragments averaging 200 bp in length (range 75–300 bp). Fragmentation is largely random with respect to genomic region and nucleosome position. ChIP experiments employing such extensively fragmented samples show 2- to 4-fold increased enrichment of protein binding sites over control genomic regions, when compared to samples sonicated to a more conventional size range (300–500 bp). The basis of improved fold enrichments is that immunoprecipitation of protein-bound regions is unaffected by fragment size, whereas immunoprecipitation of control genomic regions decreases progressively along with reduced fragment size due to fewer nonspecific binding sites. The use of extensively sonicated samples improves mapping of protein binding sites, and it extends the dynamic range for quantitative measurements of histone density. We show that many yeast promoter regions are virtually devoid of histones.
机译:甲醛交联染色质的大量超声处理可产生平均长度为200 bp(范围为75-300 bp)的DNA片段。就基因组区域和核小体位置而言,片段化在很大程度上是随机的。与超声处理到更常规尺寸范围(300-500 bp)的样品相比,采用这种广泛片段化样品的ChIP实验显示,与对照基因组区域相比,蛋白质结合位点的富集提高了2到4倍。改善的富集倍数的基础是蛋白质结合区的免疫沉淀不受片段大小的影响,而由于较少的非特异性结合位点,控制基因组区域的免疫沉淀随着片段大小的减少而逐渐减少。广泛超声处理的样品的使用改善了蛋白质结合位点的作图,并且扩展了用于组蛋白密度定量测量的动态范围。我们显示,许多酵母启动子区域实际上不含组蛋白。

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