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Published on: April 21, 2023
Enhancer binding kinetics explain transcription factor hub formation
Samantha Fallacaro1,2,3, Manya Kapoor1,3,4, Lillian Encarnation1,3,5
1Department of Cell and Developmental Biology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Abstract:
Transcription factors (TFs) form dynamic, high-concentration clusters, condensates, or hubs, proposed to increase TF binding frequency at target enhancers. However, how enhancer sequence shapes hub properties remains unclear. We developed a live imaging-based framework to quantify the spatiotemporal relationship between TF hubs and actively transcribed genes in live Drosophila embryos. Examining hubs formed by the TF Dorsal across enhancers with defined binding site composition, we find that hub enrichment and persistence scale with the number of Dorsal binding motifs. However, these hub properties do not predict transcriptional bursts for a given enhancer. Combining quantitative imaging with computational modeling, we show that Dorsal hub formation can be explained by TF-DNA binding kinetics alone. These findings support a model in which TF hubs emerge from enhancer-encoded TF-DNA interactions rather than higher-order regulatory assemblies.
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