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Lipid droplet dynamics regulate adult muscle stem cell fate.


ABSTRACT: The lipid droplet (LD) is a central hub for fatty acid metabolism in cells. Here we define the dynamics and explore the role of LDs in skeletal muscle satellite cells (SCs), a stem cell population responsible for muscle regeneration. In newly divided SCs, LDs are unequally distributed in sister cells exhibiting asymmetric cell fates, as the LDLow cell self-renews while the LDHigh cell commits to differentiation. When transplanted into regenerating muscles, LDLow cells outperform LDHigh cells in self-renewal and regeneration in vivo. Pharmacological inhibition of LD biogenesis or genetic inhibition of LD catabolism through knockout of Pnpla2 (encoding ATGL, the rate-limiting enzyme for lipolysis) disrupts cell fate homeostasis and impairs the regenerative capacity of SCs. Dysfunction of Pnpla2-null SCs is associated with energy insufficiency and oxidative stress that can be partially rescued by antioxidant (N-acetylcysteine) treatment. These results establish a direct link between LD dynamics and stem cell fate determination.

SUBMITTER: Yue F 

PROVIDER: S-EPMC9127130 | biostudies-literature | 2022 Jan

REPOSITORIES: biostudies-literature

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Lipid droplet dynamics regulate adult muscle stem cell fate.

Yue Feng F   Oprescu Stephanie N SN   Qiu Jiamin J   Gu Lijie L   Zhang Lijia L   Chen Jingjuan J   Narayanan Naagarajan N   Deng Meng M   Kuang Shihuan S  

Cell reports 20220101 3


The lipid droplet (LD) is a central hub for fatty acid metabolism in cells. Here we define the dynamics and explore the role of LDs in skeletal muscle satellite cells (SCs), a stem cell population responsible for muscle regeneration. In newly divided SCs, LDs are unequally distributed in sister cells exhibiting asymmetric cell fates, as the LD<sup>Low</sup> cell self-renews while the LD<sup>High</sup> cell commits to differentiation. When transplanted into regenerating muscles, LD<sup>Low</sup>  ...[more]

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