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UniBind: maps of high-confidence direct TF-DNA interactions across nine species

机译:UNIBIND:九种物种的高信心直接TF-DNA相互作用

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Transcription factors (TFs) bind specifically to TF binding sites (TFBSs) at cis-regulatory regions to control transcription. It is critical to locate these TF-DNA interactions to understand transcriptional regulation. Efforts to predict bona fide TFBSs benefit from the availability of experimental data mapping DNA binding regions of TFs (chromatin immunoprecipitation followed by sequencing - ChIP-seq). In this study, we processed ~?10,000 public ChIP-seq datasets from nine species to provide high-quality TFBS predictions. After quality control, it culminated with the prediction of ~?56 million TFBSs with experimental and computational support for direct TF-DNA interactions for 644 TFs in ?1000 cell lines and tissues. These TFBSs were used to predict ?197,000 cis-regulatory modules representing clusters of binding events in the corresponding genomes. The high-quality of the TFBSs was reinforced by their evolutionary conservation, enrichment at active cis-regulatory regions, and capacity to predict combinatorial binding of TFs. Further, we confirmed that the cell type and tissue specificity of enhancer activity was correlated with the number of TFs with binding sites predicted in these regions. All the data is provided to the community through the UniBind database that can be accessed through its web-interface ( https://unibind.uio.no/ ), a dedicated RESTful API, and as genomic tracks. Finally, we provide an enrichment tool, available as a web-service and an R package, for users to find TFs with enriched TFBSs in a set of provided genomic regions. UniBind is the first resource of its kind, providing the largest collection of high-confidence direct TF-DNA interactions in nine species.
机译:转录因子(TFS)特异性地与CIS调节区的TF结合位点(TFBS)结合以控制转录。定位这些TF-DNA相互作用至关重要以了解转录调节。预测BONA FIDE TFBSS的努力受益于TFS的实验数据映射DNA结合区域的可用性(染色质免疫沉淀,然后进行测序 - 芯片SEQ)。在这项研究中,我们处理了九种的10,000个公共芯片SEQ数据集,以提供高质量的TFBS预测。在质量控制之后,它有助于预测〜?5600万TFBS的实验和计算支持,用于直接TF-DNA相互作用,对644 TFS IN>?1000个细胞系和组织。这些TFBS用于预测和α197,000CIS-inucumatory模块,其代表相应基因组中的结合事件的簇。通过它们的进化守恒,富集在活性顺式调节区域的富集以及预测TFS组合结合的能力,加强了高质量的TFBS。此外,我们证实,增强剂活性的细胞类型和组织特异性与这些区域中预测的结合位点的TFS的数量相关。通过Unibind数据库将所有数据提供给社区,该数据库可以通过其Web-interface(https://unibind.uio.no/),专用休闲API以及基因组轨道访问。最后,我们提供了一个丰富的工具,可作为网络服务和R包提供,供用户在一组提供的基因组区域中找到具有丰富的TFBS的TFS。 Unibind是它的第一个资源,提供九种物种中最大的高信心直接TF-DNA相互作用。

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