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Zfp423 Regulates Skeletal Muscle Regeneration and Proliferation.

Mol. Cell. Biol.. 2019; 
AddisonWilliam N,HallKatherine C,KokabuShoichiro,MatsubaraTakuma,FuMartin M,GoriFrancesca,BaronRo
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Gene Synthesis … Page 6. 6 Zfp423 in satellite cells using the Pax7-Cre driver, impairs muscle regeneration and Zfp423 110 plays a critical role in the transition between satellite cell proliferation and myogenic 111 differentiation. 112 … 135 pcDNA-FLAG-Satb2 was obtained from Genscript. 136 137 … Get A Quote

摘要

Satellite cells (SCs) are skeletal muscle stem cells that proliferate in response to injury and provide myogenic precursors for growth and repair. Zfp423 is a transcriptional cofactor expressed in multiple immature cell populations, such as neuronal precursors, mesenchymal stem cells, and preadipocytes, where it regulates lineage allocation, proliferation, and differentiation. Here, we show that Zfp423 regulates myogenic progression during muscle regeneration. Zfp423 is undetectable in quiescent SCs but becomes expressed during SC activation. After expansion, Zfp423 is gradually downregulated as committed SCs terminally differentiate. Mice with satellite-cell-specific Zfp423 deletion exhibit sev... More

关键词

cell fate,myoblast,myogenesis,regeneration,satellite cells,skeletal mu