Motivation: Transcription factor interactions are the cornerstone of combinatorial control, which is a crucial aspect of the gene regulatory system. Understanding and predicting transcription factor interactions based on their sequence alone is difficult since they are often part of families of factors sharing high sequence identity. Given the scarcity of experimental data on interactions compared to available sequence data, however, it would be most useful to have accurate methods for the prediction of such interactions. Results: We present a method consisting of a Random Forest-based feature-selection procedure that selects relevant motifs out of a set found using a correlated motif search algorithm. Prediction accuracy for several transcription factor families (bZIP, MADS, homeobox and forkhead) reaches 60-90%. In addition, we identified those parts of the sequence that are important for the interaction specificity, and show that these are in agreement with available data. We also used the predictors to perform genome-wide scans for interaction partners and recovered both known and putative new interaction partners. © The Author 2007. Published by Oxford University Press.
CITATION STYLE
Van dijk, A. D. J., Ter braak, C. J. F., Immink, R. G., Angenent, G. C., & Van ham, R. C. H. J. (2008). Predicting and understanding transcription factor interactions based on sequence level determinants of combinatorial control. Bioinformatics, 24(1), 26–33. https://doi.org/10.1093/bioinformatics/btm539
Mendeley helps you to discover research relevant for your work.