Cell Stem Cell
Volume 23, Issue 1, 5 July 2018, Pages 31-45.e7
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Article
Single-Cell RNA-Seq Reveals Dynamic Early Embryonic-like Programs during Chemical Reprogramming

https://doi.org/10.1016/j.stem.2018.05.025Get rights and content
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Highlights

  • Highly efficient chemical reprogramming enables single-cell transcriptomic analysis

  • scRNA-seq reconstructs reprogramming trajectories and major molecular events

  • An early embryonic-like gene network and epigenetic status drive CiPSC generation

  • Chemical reprogramming is accelerated by enhancing the 2C-like program

Summary

Chemical reprogramming provides a powerful platform for exploring the molecular dynamics that lead to pluripotency. Although previous studies have uncovered an intermediate extraembryonic endoderm (XEN)-like state during this process, the molecular underpinnings of pluripotency acquisition remain largely undefined. Here, we profile 36,199 single-cell transcriptomes at multiple time points throughout a highly efficient chemical reprogramming system using RNA-sequencing and reconstruct their progression trajectories. Through identifying sequential molecular events, we reveal that the dynamic early embryonic-like programs are key aspects of successful reprogramming from XEN-like state to pluripotency, including the concomitant transcriptomic signatures of two-cell (2C) embryonic-like and early pluripotency programs and the epigenetic signature of notable genome-wide DNA demethylation. Moreover, via enhancing the 2C-like program by fine-tuning chemical treatment, the reprogramming process is remarkably accelerated. Collectively, our findings offer a high-resolution dissection of cell fate dynamics during chemical reprogramming and shed light on mechanistic insights into the nature of induced pluripotency.

Keywords

chemical reprogramming
2C-like program
early embryonic-like programs
single-cell RNA-seq
reprogramming trajectory
pluripotency
CiPSC
XEN-like cell
genome-wide hypomethylation
Zscan4

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These authors contributed equally

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