生物
中胚层
调节器
Wnt信号通路
细胞生物学
特拉尼司特
胚胎干细胞
遗传学
药理学
信号转导
基因
作者
Zhixuan Wu,Sophie Shen,Dalia Mizikovsky,Yapeng Cao,Marina Naval-Sánchez,Siew Zhuan Tan,Yanina D. Álvarez,Yuliangzi Sun,Xiaoli Chen,Qiongyi Zhao,Daniel Kim,Pengyi Yang,Timothy A. Hill,Alun Jones,David P. Fairlie,Alice Pébay,Alex W. Hewitt,Patrick Tam,Martin White,Christian M. Nefzger,Nathan J. Palpant
标识
DOI:10.1016/j.devcel.2024.01.019
摘要
Summary
Wnt signaling is a critical determinant of cell lineage development. This study used Wnt dose-dependent induction programs to gain insights into molecular regulation of stem cell differentiation. We performed single-cell RNA sequencing of hiPSCs responding to a dose escalation protocol with Wnt agonist CHIR-99021 during the exit from pluripotency to identify cell types and genetic activity driven by Wnt stimulation. Results of activated gene sets and cell types were used to build a multiple regression model that predicts the efficiency of cardiomyocyte differentiation. Cross-referencing Wnt-associated gene expression profiles to the Connectivity Map database, we identified the small-molecule drug, tranilast. We found that tranilast synergistically activates Wnt signaling to promote cardiac lineage differentiation, which we validate by in vitro analysis of hiPSC differentiation and in vivo analysis of developing quail embryos. Our study provides an integrated workflow that links experimental datasets, prediction models, and small-molecule databases to identify drug-like compounds that control cell differentiation.
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