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SOX transcription factors direct TCF-independent WNT/β-catenin responsive transcription to govern cell fate in human pluripotent stem cells

Cell Rep. 2022-08; 
Shreyasi Mukherjee, David M Luedeke, Leslie McCoy, Makiko Iwafuchi, Aaron M Zorn
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Custom Vector Construction … Putative SOX17-dependnent or TCF-dependent enhancers were synthesized (Genscript) and cloned into the pGL4.23 (luc2/miniP; Promega) vector. For transfections, hESCs were … Get A Quote

摘要

WNT/β-catenin signaling controls gene expression across biological contexts from development and stem cell homeostasis to diseases including cancer. How β-catenin is recruited to distinct enhancers to activate context-specific transcription is unclear, given that most WNT/ß-catenin-responsive transcription is thought to be mediated by TCF/LEF transcription factors (TFs). With time-resolved multi-omic analyses, we show that SOX TFs can direct lineage-specific WNT-responsive transcription during the differentiation of human pluripotent stem cells (hPSCs) into definitive endoderm and neuromesodermal progenitors. We demonstrate that SOX17 and SOX2 are required to recruit β-catenin to lineage-specific WNT-respon... More

关键词

CP: stem cell research, NMP, SOX, TCF, WNT, WNT signaling, beta-catenin, endoderm, enhancer, mesoderm, transcription factors