首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >High-Resolution Mapping of In vivo Genomic Transcription Factor Binding Sites Using In situ DNase I Footprinting and ChIP-seq
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High-Resolution Mapping of In vivo Genomic Transcription Factor Binding Sites Using In situ DNase I Footprinting and ChIP-seq

机译:使用原位DNase I足迹和ChIP-seq的体内基因组转录因子结合位点的高分辨率定位。

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摘要

Accurate identification of the DNA-binding sites of transcription factors and other DNA-binding proteins on the genome is crucial to understanding their molecular interactions with DNA. Here, we describe a new method: Genome Footprinting by high-throughput sequencing (GeF-seq), which combines in vivo DNase I digestion of genomic DNA with ChIP coupled with high-throughput sequencing. We have determined the in vivo binding sites of a Bacillus subtilis global regulator, AbrB, using GeF-seq. This method shows that exact DNA-binding sequences, which were protected from in vivo DNase I digestion, were resolved at a comparable resolution to that achieved by in vitro DNase I footprinting, and this was simply attained without the necessity of prediction by peak-calling programs. Moreover, DNase I digestion of the bacterial nucleoid resolved the closely positioned AbrB-binding sites, which had previously appeared as one peak in ChAP-chip and ChAP-seq experiments. The high-resolution determination of AbrB-binding sites using GeF-seq enabled us to identify bipartite TGGNA motifs in 96% of the AbrB-binding sites. Interestingly, in a thousand binding sites with very low-binding intensities, single TGGNA motifs were also identified. Thus, GeF-seq is a powerful method to elucidate the molecular mechanism of target protein binding to its cognate DNA sequences.
机译:准确鉴定基因组上转录因子和其他DNA结合蛋白的DNA结合位点对于理解它们与DNA的分子相互作用至关重要。在这里,我们描述了一种新方法:通过高通量测序(GeF-seq)进行基因组足迹分析,该方法将基因组DNA在体内的DNase I酶切与ChIP相结合,并结合了高通量测序。我们已经确定了使用GeF-seq的枯草芽孢杆菌全局调节剂AbrB的体内结合位点。此方法表明,可以保护DNA结合序列不受体外DNase I消化的影响,其分辨率与体外DNase I印迹所获得的分辨率相当,而无需通过峰调用预测即可简单地实现程式。此外,细菌核苷的DNase I酶切作用解决了定位紧密的AbrB结合位点,该位点先前在ChAP芯片和ChAP-seq实验中显示为一个峰。使用GeF-seq对AbrB结合位点进行高分辨率测定,使我们能够在96%的AbrB结合位点中鉴定二分体TGGNA基序。有趣的是,在具有非常低的结合强度的一千个结合位点中,还鉴定出单个TGGNA基序。因此,GeF-seq是阐明靶蛋白与其同源DNA序列结合的分子机制的有力方法。

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