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PAYWALL > Wnt4 from the Niche Controls the Mechano-Properties and Quiescent State of Muscle Stem Cells

wnt4 niche muscle stem cell quiescence regeneration rho cytoskeleton cell mechanics non-canonical mechanical properties

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#1 Engadin

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Posted 09 November 2019 - 08:23 PM


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B E H I N D   P A Y W A L L   S O U R C E :   Cell - Stem Cell

 

 

 

 

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Highlights
 
•  Wnt4 from the muscle fiber maintains SC quiescence
 
•  Wnt4 activates Rho in QSCs to maintain their tension, shape, and niche retention
 
•  Rho represses YAP to prevent SC activation
 
•  Loss of myofiber-derived Wnt4 accelerates muscle regeneration after injury
 
 
 
Summary
 
Satellite cells (SCs) reside in a dormant state during tissue homeostasis. The specific paracrine agents and niche cells that maintain SC quiescence remain unknown. We find that Wnt4 produced by the muscle fiber maintains SC quiescence through RhoA. Using cell-specific inducible genetics, we find that a Wnt4-Rho signaling axis constrains SC numbers and activation during tissue homeostasis in adult mice. Wnt4 activates Rho in quiescent SCs to maintain mechanical strain, restrict movement in the niche, and repress YAP. The induction of YAP upon disruption of RhoA is essential for SC activation under homeostasis. In the context of injury, the loss of Wnt4 from the niche accelerates SC activation and muscle repair, whereas overexpression of Wnt4 transitions SCs into a deeper state of quiescence and delays muscle repair. In conclusion, the SC pool undergoes dynamic transitions during early activation with changes in mechano-properties and cytoskeleton signaling preceding cell-cycle entry.
 
 
 
 
 
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Also tagged with one or more of these keywords: wnt4, niche, muscle stem cell, quiescence, regeneration, rho, cytoskeleton, cell mechanics, non-canonical, mechanical properties

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