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. 2023 Aug;25(8):1146-1156.
doi: 10.1038/s41556-023-01193-x. Epub 2023 Aug 7.

A fast chemical reprogramming system promotes cell identity transition through a diapause-like state

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A fast chemical reprogramming system promotes cell identity transition through a diapause-like state

Xi Chen et al. Nat Cell Biol. 2023 Aug.

Abstract

Cellular reprogramming by only small molecules holds enormous potentials for regenerative medicine. However, chemical reprogramming remains a slow process and labour intensive, hindering its broad applications and the investigation of underlying molecular mechanisms. Here, through screening of over 21,000 conditions, we develop a fast chemical reprogramming (FCR) system, which significantly improves the kinetics of cell identity rewiring. We find that FCR rapidly goes through an interesting route for pluripotent reprogramming, uniquely transitioning through a developmentally diapause-like state. Furthermore, FCR critically enables comprehensive characterizations using multi-omics technologies, and has revealed unexpected important features including key regulatory factors and epigenetic dynamics. Particularly, activation of pluripotency-related endogenous retroviruses via inhibition of heterochromatin significantly enhances reprogramming. Our studies provide critical insights into how only environmental cues are sufficient to rapidly reinstate pluripotency in somatic cells, and make notable technical and conceptual advances for solving the puzzle of regeneration.

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References

    1. Gurdon, J. B. Adult frogs derived from nuclei of single somatic cells. Dev. Biol. 4, 256 (1962). - PubMed - DOI
    1. Takahashi, K. & Yamanaka, S. Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors. Cell 126, 663–676 (2006). - PubMed - DOI
    1. Graf, T. Historical origins of transdifferentiation and reprogramming. Cell Stem Cell 9, 504–516 (2011). - PubMed - DOI
    1. Polo, J. M. et al. A molecular roadmap of reprogramming somatic cells into iPS cells. Cell 151, 1617–1632 (2012). - PubMed - PMC - DOI
    1. Chronis, C. et al. Cooperative binding of transcription factors orchestrates reprogramming. Cell 168, 442–459.e20 (2017). - PubMed - PMC - DOI

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