bioRxiv · 10.64898/2025.12.15.694070
Comprehensive perturbation of transcription factors in human cardiomyocytes reveals the regulatory architecture of congenital heart disease
Abstract
Transcription factors (TFs), including DNA binding proteins and epigenetic co-regulators, control the timing of gene programs during lineage commitment1. However, systematically defining the dynamic activities of the human genomes nearly 2000 TFs during development remains challenging2,3. Here, we use Perturb-Seq to map the transcriptional impact of nearly all human TFs and a subset of enhancers during cardiomyocyte differentiation. Our results suggest that developmental regulatory networks are distributed across highly connected hub TFs4-6 that are dynamic across lineage and time, rather than organizing into top-down hierarchies directed by "master regulators". We also identify distinct TF ensembles that regulate sequential decision points during cardiac cell-fate specification by coordinating lineage-specific activation with alternate lineage repression. Separately, analysis of TF-TF cooperativity uncovers a dynamic interaction between MEF2 family TFs7 and members of the Polycomb Repressive complex 18-10 to execute alternative fate repression. Building on these regulatory interactions, we construct a deep learning transformer model to accurately predict perturbed TFs driving altered regulatory networks in patient-derived transcriptomes. Together, our results define the regulatory network architecture of human lineage specification and provide a platform for predicting TF function and interpreting disease mechanisms.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Takeuchi, C., Sivakumar, S., Sundarrajan, A., Wang, Y., Goetsch, S. C., Zhao, H., Wang, L., Nzima, M., Deng, M., Kulkarni, K. N., Xu, L., Wu, J., Posner, B. A., Chahrour, M. H., Kraus, W. L., Munshi, N. V., Hon, G. C.. 2025-12-17. Comprehensive perturbation of transcription factors in human cardiomyocytes reveals the regulatory architecture of congenital heart disease. https://doi.org/10.64898/2025.12.15.694070
Cite the original work for its findings. Save a collection to share your selection of sources.