Department of Genetics and Center for Genome Sciences and Systems Biology, Washington University, School of Medicine, St. Louis, Missouri 63108, USA.
Genome Res. 2011 May;21(5):748-55. doi: 10.1101/gr.114850.110. Epub 2011 Apr 6.
Transcription factors direct gene expression, so there is much interest in mapping their genome-wide binding locations. Current methods do not allow for the multiplexed analysis of TF binding, and this limits their throughput. We describe a novel method for determining the genomic target genes of multiple transcription factors simultaneously. DNA-binding proteins are endowed with the ability to direct transposon insertions into the genome near to where they bind. The transposon becomes a "Calling Card" marking the visit of the DNA-binding protein to that location. A unique sequence "barcode" in the transposon matches it to the DNA-binding protein that directed its insertion. The sequences of the DNA flanking the transposon (which reveal where in the genome the transposon landed) and the barcode within the transposon (which identifies the TF that put it there) are determined by massively parallel DNA sequencing. To demonstrate the method's feasibility, we determined the genomic targets of eight transcription factors in a single experiment. The Calling Card method promises to significantly reduce the cost and labor needed to determine the genomic targets of many transcription factors in different environmental conditions and genetic backgrounds.
转录因子指导基因表达,因此人们对绘制其全基因组结合位置非常感兴趣。目前的方法不允许对 TF 结合进行多路复用分析,这限制了它们的通量。我们描述了一种同时确定多个转录因子基因组靶基因的新方法。DNA 结合蛋白具有将转座子插入到它们结合的基因组附近的能力。转座子成为标记 DNA 结合蛋白访问该位置的“名片”。转座子中的独特序列“条形码”与其指导其插入的 DNA 结合蛋白匹配。转座子侧翼 DNA 的序列(揭示转座子在基因组中的着陆位置)和转座子内的条形码(识别放置它的 TF)通过大规模平行 DNA 测序来确定。为了证明该方法的可行性,我们在单个实验中确定了八个转录因子的基因组靶标。Calling Card 方法有望显著降低在不同环境条件和遗传背景下确定许多转录因子基因组靶标的成本和劳动力。