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Single-cell Multiomics Analysis Reveals CTCF as a Key Regulator of Lung Morphogenesis and Progenitor Maintenance

GSE286984 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 4 samples Submitted 2025/10/08 Platform GPL24247
Summary
Lung development generates a complex tree-like architecture through proximal-distal patterning and branching morphogenesis. However, the gene regulatory programs governing embryonic lung development remain poorly understood. Here, we present a comprehensive single-cell multi-omics atlas of mouse embryonic lungs, integrating gene expression and chromatin accessibility profiles. Through systematic analysis, we identify 13 distinct cell types and map cis-regulatory elements, peak-to-gene linkages, and transcription factors underlying lung development. Leveraging this multi-modal dataset, we uncover lineage-determining transcription factors driving cell differentiation, including the Activated Protein-1 complex. We further delineate gene regulatory networks involving diverse transcription regulators, including CCCTC-binding factor. Using the Ctcf conditional knockout mouse, coupled with histological and multi-omics analyses, we demonstrate that CCCTC-binding factor orchestrates lung progenitor maintenance and branching morphogenesis by modulating both gene expression and chromatin accessibility. Thus, our study provides a multi-omics resource and mechanistic insights for transcriptional regulation of lung morphogenesis.
Published in
Single-cell multiomics analysis reveals CTCF as a key regulator of lung morphogenesis and progenitor maintenance
Sun S, Jiang Y, Huang F et al. · Nature communications 2025 · PMID 41315351 · doi:10.1038/s41467-025-65757-1
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Also filed as BioProject PRJNA1203355 and SRA study SRP553986. Searching any of these in the dataset finder brings you back here.

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