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The β-catenin-dependent canonical Wnt signaling is pivotal in organ development, tissue homeostasis, and cancer. Here, we identified an upstream enhancer of - the coding gene for β-catenin, named ieCtnnb1 (ntestinal nhancer of ), which is crucial for intestinal homeostasis. ieCtnnb1 is predominantly active in the base of small intestinal crypts and throughout the epithelia of large intestine. Knockout of ieCtnnb1 led to a reduction in transcription, compromising the canonical Wnt signaling in intestinal crypts. Single-cell sequencing revealed that ieCtnnb1 knockout altered epithelial compositions and potentially compromised functions of small intestinal crypts. While deletion of ieCtnnb1 hampered epithelial turnovers in physiologic conditions, it prevented occurrence and progression of Wnt/β-catenin-driven colorectal cancers. Human ieCTNNB1 drove reporter gene expression in a pattern highly similar to mouse ieCtnnb1. ieCTNNB1 contains a single-nucleotide polymorphism associated with expression levels in human gastrointestinal epithelia. The enhancer activity of ieCTNNB1 in colorectal cancer tissues was stronger than that in adjacent normal tissues. HNF4α and phosphorylated CREB1 were identified as key trans-factors binding to ieCTNNB1 and regulating transcription. Together, these findings unveil an enhancer-dependent mechanism controlling the dosage of Wnt signaling and homeostasis in intestinal epithelia.
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http://dx.doi.org/10.7554/eLife.98238 | DOI Listing |
J Biol Chem
September 2025
Institute of Anatomy and Cell Biology, University of Würzburg, Würzburg, Germany. Electronic address:
WNT7A and WNT7B, secreted by neural cells, are essential regulators of developmental brain angiogenesis and blood-brain barrier integrity. In brain endothelial cells, WNT7 proteins activate β-catenin signaling through the ligand-specific receptor complex GPR124-RECK and classical WNT receptors of the FZD and LRP families. Previous studies suggested that WNT7 isoforms assemble a GPR124-RECK-FZD-LRP5/6 multi-receptor complex for signaling.
View Article and Find Full Text PDFMol Pharmacol
September 2025
State Key Laboratory of Bioactive Molecules and Druggability Assessment, Institute of Genomic Medicine, International Cooperative Laboratory of Traditional Chinese Medicine Modernization and Innovative Drug Development of Chinese Ministry of Education (MOE), College of Pharmacy, Jinan University, Gu
Gastric cancer (GC) is a leading cause of cancer-related deaths globally, with metastasis critically impacting prognosis. Splicing factors are key regulators of tumorigenesis, particularly in metastasis. In this exploratory study, we investigated the role and mechanism of heterogeneous nuclear ribonucleoprotein A/B (HNRNPAB) in GC cell invasion and migration.
View Article and Find Full Text PDFNat Commun
September 2025
Shimoda Marine Research Center, University of Tsukuba, Shizuoka, Japan.
Since Hans Driesch's pioneering work in 1891, it has been known that animal embryos can develop into complete individuals even when divided. However, the developmental processes and molecular mechanisms enabling this self-organization remain poorly understood. In this study, we revisit Driesch's experiments by examining the development of isolated 2-cell stage blastomeres in the sea urchin, Hemicentrotus pulcherrimus.
View Article and Find Full Text PDFPlanta Med
September 2025
Department of Laboratory Medicine, Taizhou First People's Hospital, Taizhou, China.
Ovatodiolide, a macrocyclic diterpenoid isolated from the traditional Chinese medicinal herb Anisomeles indica, exhibits diverse pharmacological activities in recent research. Its antitumor effects involve modulation of key signaling pathways (e.g.
View Article and Find Full Text PDFNeurochem Res
September 2025
Biochemistry Department, Faculty of Pharmacy, Ain Shams University, Cairo, Egypt.
Cognitive impairments are frequently observed in cancer survivors who received chemotherapy based on doxorubicin (DOX), attributable to oxidative stress, neuroinflammation, and the apoptotic effect of DOX. Dapagliflozin (DAPA) has gained significant attention attributable to its powerful anti-inflammatory, antioxidant, and anti-apoptotic characteristics. The present investigation seeks to assess the possible neuroprotective properties of DAPA in alleviating neurodegeneration and cognitive dysfunction caused by DOX.
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