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Publication : Loss of Ptpn11 (Shp2) drives satellite cells into quiescence.

First Author  Griger J Year  2017
Journal  Elife Volume  6
PubMed ID  28463680 Mgi Jnum  J:257090
Mgi Id  MGI:6116911 Doi  10.7554/eLife.21552
Citation  Griger J, et al. (2017) Loss of Ptpn11 (Shp2) drives satellite cells into quiescence. Elife 6:e21552
abstractText  The equilibrium between proliferation and quiescence of myogenic progenitor and stem cells is tightly regulated to ensure appropriate skeletal muscle growth and repair. The non-receptor tyrosine phosphatase Ptpn11 (Shp2) is an important transducer of growth factor and cytokine signals. Here we combined complex genetic analyses, biochemical studies and pharmacological interference to demonstrate a central role of Ptpn11 in postnatal myogenesis of mice. Loss of Ptpn11 drove muscle stem cells out of the proliferative and into a resting state during muscle growth. This Ptpn11 function was observed in postnatal but not fetal myogenic stem cells. Furthermore, muscle repair was severely perturbed when Ptpn11 was ablated in stem cells due to a deficit in stem cell proliferation and survival. Our data demonstrate a molecular difference in the control of cell cycle withdrawal in fetal and postnatal myogenic stem cells, and assign to Ptpn11 signaling a key function in satellite cell activity.
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