The p38α/β MAPK functions as a molecular switch to activate the quiescent satellite cell

NC Jones, KJ Tyner, L Nibarger, HM Stanley… - The Journal of cell …, 2005 - rupress.org
NC Jones, KJ Tyner, L Nibarger, HM Stanley, DDW Cornelison, YV Fedorov, BB Olwin
The Journal of cell biology, 2005rupress.org
Somatic stem cells cycle slowly or remain quiescent until required for tissue repair and
maintenance. Upon muscle injury, stem cells that lie between the muscle fiber and basal
lamina (satellite cells) are activated, proliferate, and eventually differentiate to repair the
damaged muscle. Satellite cells in healthy muscle are quiescent, do not express MyoD
family transcription factors or cell cycle regulatory genes and are insulated from the
surrounding environment. Here, we report that the p38α/β family of mitogen-activated protein …
Somatic stem cells cycle slowly or remain quiescent until required for tissue repair and maintenance. Upon muscle injury, stem cells that lie between the muscle fiber and basal lamina (satellite cells) are activated, proliferate, and eventually differentiate to repair the damaged muscle. Satellite cells in healthy muscle are quiescent, do not express MyoD family transcription factors or cell cycle regulatory genes and are insulated from the surrounding environment. Here, we report that the p38α/β family of mitogen-activated protein kinases (MAPKs) reversibly regulates the quiescent state of the skeletal muscle satellite cell. Inhibition of p38α/β MAPKs (a) promotes exit from the cell cycle, (b) prevents differentiation, and (c) insulates the cell from most external stimuli allowing the satellite cell to maintain a quiescent state. Activation of satellite cells and p38α/β MAPKs occurs concomitantly, providing further support that these MAPKs function as a molecular switch for satellite cell activation.
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