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Evaluating the impact of single nucleotide variants on transcription factor binding

机译:评估单核苷酸变体对转录因子结合的影响

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Diseases and phenotypes caused by disrupted transcription factor (TF) binding are being identified, but progress is hampered by our limited capacity to predict such functional alterations. Improving predictions may be dependent on expanding the set of bona fide TF binding alterations. Allele-specific binding (ASB) events, where TFs preferentially bind to one of the two alleles at heterozygous sites, reveal the impact of sequence variations in altered TF binding. Here, we present the largest ASB compilation to our knowledge, 10 765 ASB events retrieved from 45 ENCODE ChIP-Seq data sets. Our analysis showed that ASB events were frequently associated with motif alterations of the ChIP'ed TF and potential partner TFs, allelic difference of DNase I hypersensitivity and allelic difference of histone modifications. For TF dimers bound symmetrically to DNA, ASB data revealed that central positions of the TF binding motifs were disproportionately important for binding. Lastly, the impact of variation on TF binding was predicted by a classification model incorporating all the investigated features of ASB events. Classification models using only DNase I hypersensitivity and sequence data exhibited predictive accuracy approaching the models with substantially more features. Taken together, the combination of ASB data and the classification model represents an important step toward elucidating regulatory variants across the human genome.
机译:人们已经确定了由转录因子(TF)结合破坏引起的疾病和表型,但由于我们预测此类功能改变的能力有限,阻碍了进展。改善预测可能取决于扩大善意TF结合改变的集合。等位基因特异性结合(ASB)事件(其中TF优先与杂合位点的两个等位基因之一结合)揭示了序列变化对TF结合改变的影响。在这里,我们提供了我们所知最大的ASB汇编,从45个ENCODE ChIP-Seq数据集中检索了10765个ASB事件。我们的分析表明,ASB事件通常与ChIP'ed TF和潜在配偶TF的基序改变,DNase I超敏性的等位基因差异和组蛋白修饰的等位基因差异相关。对于对称地与DNA结合的TF二聚体,ASB数据显示TF结合基序的中心位置对于结合非常重要。最后,变异对TF结合的影响是通过分类模型预测的,该分类模型结合了ASB事件的所有研究特征。仅使用DNase I超敏性和序列数据的分类模型显示的预测准确性接近具有更多特征的模型。总而言之,ASB数据和分类模型的结合代表了阐明人类基因组调控变异的重要一步。

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    《Nucleic Acids Research》 |2016年第21期|共11页
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