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By the company they keep: interaction networks define the binding ability of transcription factors

机译:他们保留的公司:相互作用网络定义了转录因子的结合能力

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Access to genome-wide data provides the opportunity to address questions concerning the ability of transcription factors (TFs) to assemble in distinct macromolecular complexes. Here, we introduce the PAnDA (Protein And DNA Associations) approach to characterize DNA associations with human TFs using expression profiles, protein-protein interactions and recognition motifs. Our method predicts TF binding events with > 0.80 accuracy revealing cell-specific regulatory patterns that can be exploited for future investigations. Even when the precise DNA-binding motifs of a specific TF are not available, the information derived from protein-protein networks is sufficient to perform high-confidence predictions (area under the ROC curve of 0.89). PAnDA is freely available at http://service.tartaglialab.comew_submission/panda.
机译:获得全基因组数据提供了解决有关转录因子(TFs)在不同的高分子复合物中组装能力的问题的机会。在这里,我们介绍PAnDA(蛋白质和DNA关联)方法,以使用表达谱,蛋白质-蛋白质相互作用和识别基序来表征与人TF的DNA关联。我们的方法预测TF结合事件的准确度> 0.80,揭示了细胞特异性调控模式,可用于将来的研究。即使无法获得特定TF的精确DNA结合基序,来自蛋白质-蛋白质网络的信息也足以进行高可信度的预测(ROC曲线下的面积为0.89)。 PAnDA可从http://service.tartaglialab.comew_submission/panda免费获得。

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