Stem Cells and Development, Department of Developmental Biology, Institut Pasteur, CNRS URA 2578, Paris, France.
J Cell Sci. 2012 Apr 1;125(Pt 7):1738-49. doi: 10.1242/jcs.097006. Epub 2012 Feb 24.
Skeletal muscle stem cell fate in adult mice is regulated by crucial 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 with wild-type satellite cells. Paradoxically however, heterotypic transplantation of Myf5 heterozygous cells into regenerating muscles results in higher self-renewal capacity compared with wild-type stem cells, whereas myofibre regenerative capacity is not altered. By 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 crucial transcription factors while generating a pool of responsive heterogeneous cells.
成体肌肉干细胞命运受关键转录因子调控,包括决定基因 Myf5 和 Myod。Myf5 在调节静息肌肉干细胞中的精确作用仍不清楚。本研究表明,大多数(但不是全部)静息卫星细胞表达 Myf5 蛋白,但表达水平不同,与野生型卫星细胞相比,驻留的 Myf5 杂合肌肉干细胞更有可能进行成肌细胞分化。然而,矛盾的是,与野生型干细胞相比,Myf5 杂合细胞的异质性移植到再生肌肉中会导致更高的自我更新能力,而肌纤维再生能力没有改变。相比之下,Pax7 杂合不足在转录组分析中没有显示出主要的改变。这些观察结果提供了一种将 Myf5 水平与肌肉干细胞异质性和命运联系起来的机制,揭示了与 Myf5 杂合不足相关的两种截然不同的对立表型。这些发现对于关键转录因子如何通过产生反应性异质细胞池来调节干细胞命运具有重要意义。