Author:
Gayraud-Morel Barbara,Chrétien Fabrice,Jory Aurélie,Sambasivan Ramkumar,Negroni Elisa,Flamant Patricia,Soubigou Guillaume,Coppée Jean-Yves,Di Santo James,Cumano Ana,Mouly Vincent,Tajbakhsh Shahragim
Abstract
Skeletal muscle stem cell fate in adult mice is regulated by critical transcription factors, including the determination genes Myf5 and Myod. The precise role of Myf5 in regulating quiescent muscle stem cells has remained elusive. Here we show that most, but not all quiescent satellite cells express Myf5 protein, but at varying levels, and that resident Myf5 heterozygous muscle stem cells are more primed for myogenic commitment compared to wild type satellite cells. Paradoxically however, heterotypic transplantation of Myf5 heterozygous cells into regenerating muscles results in higher self-renewal capacity compared to wild-type stem cells, whereas myofibre regenerative capacity is not altered. In contrast, Pax7 haploinsufficiency does not show major modifications by transcriptome analysis. These observations provide a mechanism linking Myf5 levels to muscle stem cell heterogeneity and fate by exposing two distinct and opposing phenotypes associated with Myf5 haploinsufficiency. These findings have important implications for how stem cell fates can be modulated by critical transcription factors while generating a pool of responsive heterogeneous cells.
Publisher
The Company of Biologists
Cited by
76 articles.
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