Department of Pediatrics, Minneapolis, MN, 55455, USA.
Department of Pediatrics, Minneapolis, MN, 55455, USA; Stem Cell Institute, University of Minnesota, Minneapolis, MN, 55455, USA.
Biochem Biophys Res Commun. 2019 Dec 3;520(2):284-290. doi: 10.1016/j.bbrc.2019.09.140. Epub 2019 Oct 5.
The Mesp1 lineage contributes to cardiac, hematopoietic and skeletal myogenic development. Interestingly, muscle stem cells residing in craniofacial skeletal muscles primarily arise from Mesp1+ progenitors, but those in trunk and limb skeletal muscles do not. To gain insights into the difference between the head and trunk/limb muscle developmental processes, we studied Mesp1+ skeletal myogenic derivatives via single-cell RNA-seq and other strategies. Using a doxycycline-inducible Mesp1-expressing mouse embryonic stem cell line, we found that the development of Mesp1-induced skeletal myogenic progenitors can be characterized by dynamic expression of PDGFRα and VCAM1. Single-cell RNA-seq analysis further revealed the heterogeneous nature of these Mesp1+ derivatives, spanning pluripotent and mesodermal to mesenchymal and skeletal myogenic. We subsequently reconstructed the single-cell trajectories of these subpopulations. Our data thereby provide a cell fate projection of Mesp1-induced skeletal myogenesis.
Mesp1 谱系有助于心脏、造血和骨骼肌肉的发育。有趣的是,位于颅面骨骼肌肉中的肌肉干细胞主要来源于 Mesp1+祖细胞,但位于躯干和四肢骨骼肌肉中的肌肉干细胞则不然。为了深入了解头部和躯干/四肢肌肉发育过程之间的差异,我们通过单细胞 RNA-seq 和其他策略研究了 Mesp1+骨骼肌肉衍生细胞。使用一种可诱导表达 Mesp1 的诱导多能干细胞系,我们发现 Mesp1 诱导的骨骼肌肉前体细胞的发育可以通过 PDGFRα 和 VCAM1 的动态表达来表征。单细胞 RNA-seq 分析进一步揭示了这些 Mesp1+衍生物的异质性,涵盖了多能性和中胚层到间充质和骨骼肌肉。我们随后重建了这些亚群的单细胞轨迹。我们的数据因此提供了 Mesp1 诱导的骨骼肌肉发生的细胞命运预测。