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Comment
. 2023 Jul 3;222(7):e202305022.
doi: 10.1083/jcb.202305022. Epub 2023 Jun 14.

Calling long distance: Cell cycle-dependent Ca2+ flows connect stem cells across regeneration tissues

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Comment

Calling long distance: Cell cycle-dependent Ca2+ flows connect stem cells across regeneration tissues

Gladiola Goranci-Buzhala et al. J Cell Biol. .

Abstract

How adult stem cells signal in vivo over time to coordinate their fate and behavior across self-renewing tissues remains a challenging question. In this issue, Moore et al. (2023. J. Cell Biol.https://doi.org/10.1083/jcb.202302095) combine high-resolution live imaging in mice with machine learning tools to reveal temporally regulated tissue-scale patterns of Ca2+ signaling orchestrated by cycling basal stem cells of the skin epidermis.

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Figures

Figure 1.
Figure 1.
Cell cyclecontrolled short- and long-range Ca2+ signal dynamics coordinates stem cell cycle in the epidermis. (A and B) Moore et al. (1) combined high resolution intravital imaging of large areas of the basal epidermis (A) with new unsupervised machine learning called GSTH (B) to assess single cell signaling dynamics of thousands of cells and local and large distance spatiotemporal coordination of signals to monitor Ca2+ signaling. (C) Model for spatiotemporal coordination of Ca2+ signaling across the basal stem cell compartment of the epidermis. Cells in G2 are essential to amplify signals within local signaling neighborhoods to control and reinforce robust long-distance communication, whereas G1 cells, through high expression of Cx43, are essential to propagate signals between local neighborhoods.

Comment on

  • Cell cycle controls long-range calcium signaling in the regenerating epidermis.
    Moore JL, Bhaskar D, Gao F, Matte-Martone C, Du S, Lathrop E, Ganesan S, Shao L, Norris R, Campamà Sanz N, Annusver K, Kasper M, Cox A, Hendry C, Rieck B, Krishnaswamy S, Greco V. Moore JL, et al. J Cell Biol. 2023 Jul 3;222(7):e202302095. doi: 10.1083/jcb.202302095. Epub 2023 Apr 27. J Cell Biol. 2023. PMID: 37102999 Free PMC article.

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References

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