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SOX2 regulates foregut squamous epithelial homeostasis and is lost during Barrett’s esophagus development [CUT&Run]

GSE297942 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 6 samples Submitted 2025/06/06 Platform GPL24247
Summary
Esophageal adenocarcinoma (EA) is increasingly prevalent and is thought to arise from Barrett’s esophagus (BE), a metaplastic condition in which chronic acid and bile reflux transforms the esophageal squamous epithelium into a gastric-intestinal glandular mucosa. The molecular determinants driving this metaplasia are poorly understood. We developed a human BE organoid biobank that recapitulates BE’s molecular heterogeneity. Bulk and single-cell transcriptomics, supported by patient tissue analysis, revealed that BE differentiation reflects a balance between SOX2 (foregut/esophageal) and CDX2 (hindgut/intestinal) transcription factors. Using squamous-specific inducible Sox2 knockout (Krt5CreER/+; Sox2∆/∆; ROSA26tdTomato/+) mice, we observed increased basal proliferation, reduced squamous differentiation, and expanded metaplastic glands at the squamocolumnar junction, some tracing back to Krt5-expressing cells. CUT&RUN analysis showed SOX2 bound and promoted differentiation-associated (e.g., Krt13) and repressed proliferation-associated (e.g., Mki67) targets. Thus, SOX2 is critical for foregut squamous epithelial differentiation and its decreased expression is likely an initiating step in progression to BE and thence to EA.
Published in
SOX2 regulates foregut squamous epithelial homeostasis and is lost during Barrett's esophagus development
Jin RU, Xu Y, Lih TM et al. · The Journal of clinical investigation 2025 · PMID 40587339 · doi:10.1172/JCI190374
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Also filed as BioProject PRJNA1267002 and SRA study SRP587428. Searching any of these in the dataset finder brings you back here.

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