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Merck
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  • Sufu- and Spop-mediated downregulation of Hedgehog signaling promotes beta cell differentiation through organ-specific niche signals.

Sufu- and Spop-mediated downregulation of Hedgehog signaling promotes beta cell differentiation through organ-specific niche signals.

Nature communications (2019-10-13)
Theodora Yung, Frankie Poon, Minggao Liang, Sabrina Coquenlorge, Emily C McGaugh, Chi-Chung Hui, Michael D Wilson, M Cristina Nostro, Tae-Hee Kim
摘要

Human embryonic stem cell-derived beta cells offer a promising cell-based therapy for diabetes. However, efficient stem cell to beta cell differentiation has proven difficult, possibly due to the lack of cross-talk with the appropriate mesenchymal niche. To define organ-specific niche signals, we isolated pancreatic and gastrointestinal stromal cells, and analyzed their gene expression during development. Our genetic studies reveal the importance of tightly regulated Hedgehog signaling in the pancreatic mesenchyme: inactivation of mesenchymal signaling leads to annular pancreas, whereas stroma-specific activation of signaling via loss of Hedgehog regulators, Sufu and Spop, impairs pancreatic growth and beta cell genesis. Genetic rescue and transcriptome analyses show that these Sufu and Spop knockout defects occur through Gli2-mediated activation of gastrointestinal stromal signals such as Wnt ligands. Importantly, inhibition of Wnt signaling in organoid and human stem cell cultures significantly promotes insulin-producing cell generation, altogether revealing the requirement for organ-specific regulation of stromal niche signals.

材料
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产品描述

Sigma-Aldrich
单克隆抗-肌动蛋白,α-平滑肌, clone 1A4, ascites fluid
Sigma-Aldrich
抗Sox9抗体, Chemicon®, from rabbit
Sigma-Aldrich
单克隆抗 胰岛素 小鼠抗, clone K36AC10, ascites fluid