bioRxiv · 10.1101/345835
Diverse motif ensembles specify non-redundant DNA binding activities of AP-1 family members in macrophages
Abstract
Mechanisms by which members of the AP-1 family of transcription factors play both redundant and non-redundant biological roles despite recognizing the same DNA sequence remain poorly understood. To address this question, we investigated the molecular functions and genome-wide DNA binding patterns of AP-1 family members in macrophages. ChIP-sequencing showed overlapping and distinct binding profiles for each factor that were remodeled following TLR4 ligation. Development of a machine learning approach that jointly weighs hundreds of DNA recognition elements yielded dozens of motifs predicted to drive factor-specific binding profiles. Machine learning-based predictions were confirmed by analysis of the effects of mutations in genetically diverse mice and by loss of function experiments. These findings provide evidence that non-redundant genomic locations of different AP-1 family members in macrophages largely result from collaborative interactions with diverse, locus-specific ensembles of transcription factors and suggest a general mechanism for encoding functional specificities of their common recognition motif.
Source connections
Explore related subjects
Keep this discovery
Fonseca, G. J., Tao, J., Westin, E. M., Duttke, S. H., Spann, N. J., Strid, T., Shen, Z., Stender, J. D., Link, V. M., Benner, C., Glass, C. K.. 2018-06-13. Diverse motif ensembles specify non-redundant DNA binding activities of AP-1 family members in macrophages. https://doi.org/10.1101/345835
Cite the original work for its findings. Save a collection to share your selection of sources.