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High-throughput biochemical analysis of in vivo location data reveals novel distinct classes of POU5F1(Oct4)/DNA complexes

机译:体内位置数据的高通量生化分析揭示了新颖独特的POU5F1(Oct4)/ DNA复合物类别

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摘要

The transcription factor POU5F1 is a key regulator of embryonic stem (ES) cell pluripotency and a known oncoprotein. We have developed a novel high-throughput binding assay called MEGAshift (microarray evaluation of genomic aptamers by shift) that we use to pinpoint the exact location, affinity, and stoichiometry of the DNA–protein complexes identified by chromatin immunoprecipitation studies. We consider all genomic regions identified as POU5F1-ChIP–enriched in both human and mouse. Compared with regions that are ChIP-enriched in a single species, we find these regions more likely to be near actively transcribed genes in ES cells. We resynthesize these genomic regions as a pool of tiled 35-mers. This oligonucleotide pool is then assayed for binding to recombinant POU5F1 by gel shift. The degree of binding for each oligonucleotide is accurately measured on a custom oligonucleotide microarray. We explore the relationship between experimentally determined and computationally predicted binding strengths, find many novel functional combinations of POU5F1 half sites, and demonstrate efficient motif discovery by incorporating binding information into a motif finding algorithm. In addition to further refining location studies for transcription factors, this method holds promise for the high-throughput screening of promoters, SNP regions, and epigenetic modifications for factor binding.
机译:转录因子POU5F1是胚胎干(ES)细胞多能性的关键调节剂,并且是已知的癌蛋白。我们已经开发了一种新颖的高通量结合测定法,称为MEGAshift(通过移位对基因组适体进行微阵列评估),我们可以用来确定染色质免疫沉淀研究鉴定的DNA-蛋白质复合物的确切位置,亲和力和化学计量。我们考虑所有鉴定为在人类和小鼠中都富含POU5F1-ChIP的基因组区域。与单个物种中富含ChIP的区域相比,我们发现这些区域更有可能接近ES细胞中活跃转录的基因。我们将这些基因组区域重新合成为平铺的35-mers池。然后通过凝胶转移测定该寡核苷酸池与重组POU5F1的结合。在定制的寡核苷酸微阵列上准确测量每种寡核苷酸的结合程度。我们探索实验确定和计算预测的结合强度之间的关系,发现许多新颖的POU5F1半位点功能组合,并通过将结合信息整合到一个基序发现算法中来证明有效的基序发现。除了进一步完善转录因子的定位研究外,该方法还有望用于高通量筛选启动子,SNP区域和表观遗传修饰因子结合。

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