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Dedifferentiation maintains melanocyte stem cells in a dynamic niche.

Authors :
Sun, Qi
Lee, Wendy
Hu, Hai
Ogawa, Tatsuya
De Leon, Sophie
Katehis, Ioanna
Lim, Chae Ho
Takeo, Makoto
Cammer, Michael
Taketo, M. Mark
Gay, Denise L.
Millar, Sarah E.
Ito, Mayumi
Source :
Nature; Apr2023, Vol. 616 Issue 7958, p774-782, 9p
Publication Year :
2023

Abstract

For unknow reasons, the melanocyte stem cell (McSC) system fails earlier than other adult stem cell populations1, which leads to hair greying in most humans and mice2,3. Current dogma states that McSCs are reserved in an undifferentiated state in the hair follicle niche, physically segregated from differentiated progeny that migrate away following cues of regenerative stimuli4–8. Here we show that most McSCs toggle between transit-amplifying and stem cell states for both self-renewal and generation of mature progeny, a mechanism fundamentally distinct from those of other self-renewing systems. Live imaging and single-cell RNA sequencing revealed that McSCs are mobile, translocating between hair follicle stem cell and transit-amplifying compartments where they reversibly enter distinct differentiation states governed by local microenvironmental cues (for example, WNT). Long-term lineage tracing demonstrated that the McSC system is maintained by reverted McSCs rather than by reserved stem cells inherently exempt from reversible changes. During ageing, there is accumulation of stranded McSCs that do not contribute to the regeneration of melanocyte progeny. These results identify a new model whereby dedifferentiation is integral to homeostatic stem cell maintenance and suggest that modulating McSC mobility may represent a new approach for the prevention of hair greying.Local microenvironmental cues modulate melanocyte stem cells, which control hair pigmentation, to enter different differentiation states, shifting between hair follicle stem cell and transit-amplifying compartments, a process that is different to other self-renewing systems. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
616
Issue :
7958
Database :
Complementary Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
163348689
Full Text :
https://doi.org/10.1038/s41586-023-05960-6