Systematic identification of cell-fate regulatory programs using a single-cell atlas of mouse development

使用小鼠发育单细胞图谱系统地识别细胞命运调控程序

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作者:Lijiang Fei #, Haide Chen #, Lifeng Ma #, Weigao E #, Renying Wang #, Xing Fang #, Ziming Zhou #, Huiyu Sun, Jingjing Wang, Mengmeng Jiang, Xinru Wang, Chengxuan Yu, Yuqing Mei, Danmei Jia, Tingyue Zhang, Xiaoping Han, Guoji Guo

Abstract

Waddington's epigenetic landscape is a metaphor frequently used to illustrate cell differentiation. Recent advances in single-cell genomics are altering our understanding of the Waddington landscape, yet the molecular mechanisms of cell-fate decisions remain poorly understood. We constructed a cell landscape of mouse lineage differentiation during development at the single-cell level and described both lineage-common and lineage-specific regulatory programs during cell-type maturation. We also found lineage-common regulatory programs that are broadly active during the development of invertebrates and vertebrates. In particular, we identified Xbp1 as an evolutionarily conserved regulator of cell-fate determinations across different species. We demonstrated that Xbp1 transcriptional regulation is important for the stabilization of the gene-regulatory networks for a wide range of mouse cell types. Our results offer genetic and molecular insights into cellular gene-regulatory programs and will serve as a basis for further advancing the understanding of cell-fate decisions.

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