Ghent University, Department of Plant Biotechnology and Bioinformatics, Technologiepark 927, 9052 Ghent, Belgium.
VIB Center for Plant Systems Biology, Technologiepark 927, 9052 Ghent, Belgium.
Nucleic Acids Res. 2018 Apr 6;46(6):e31. doi: 10.1093/nar/gkx1279.
A gene regulatory network (GRN) is a collection of regulatory interactions between transcription factors (TFs) and their target genes. GRNs control different biological processes and have been instrumental to understand the organization and complexity of gene regulation. Although various experimental methods have been used to map GRNs in Arabidopsis thaliana, their limited throughput combined with the large number of TFs makes that for many genes our knowledge about regulating TFs is incomplete. We introduce TF2Network, a tool that exploits the vast amount of TF binding site information and enables the delineation of GRNs by detecting potential regulators for a set of co-expressed or functionally related genes. Validation using two experimental benchmarks reveals that TF2Network predicts the correct regulator in 75-92% of the test sets. Furthermore, our tool is robust to noise in the input gene sets, has a low false discovery rate, and shows a better performance to recover correct regulators compared to other plant tools. TF2Network is accessible through a web interface where GRNs are interactively visualized and annotated with various types of experimental functional information. TF2Network was used to perform systematic functional and regulatory gene annotations, identifying new TFs involved in circadian rhythm and stress response.
基因调控网络(GRN)是转录因子(TFs)与其靶基因之间调控相互作用的集合。GRNs 控制着不同的生物过程,对于理解基因调控的组织和复杂性具有重要意义。尽管已经使用了各种实验方法来绘制拟南芥中的 GRN,但它们的通量有限,再加上 TFs 的数量众多,使得我们对许多基因的调节 TFs 的了解并不完整。我们引入了 TF2Network,这是一种利用大量 TF 结合位点信息的工具,可以通过检测一组共表达或功能相关基因的潜在调节因子来描绘 GRNs。使用两个实验基准的验证表明,TF2Network 在 75-92%的测试集中预测到了正确的调节剂。此外,与其他植物工具相比,我们的工具对输入基因集的噪声具有鲁棒性,假阳性率低,并且在恢复正确调节剂方面表现出更好的性能。TF2Network 通过一个网络界面提供,可在其中交互可视化和注释各种类型的实验功能信息。TF2Network 用于进行系统的功能和调控基因注释,鉴定参与生物钟和应激反应的新 TF。