Division of Biological Sciences, University of Missouri, Columbia, MO 65211, USA.
Development. 2011 Dec;138(24):5279-89. doi: 10.1242/dev.068411. Epub 2011 Nov 9.
During development and regeneration, directed migration of cells, including neural crest cells, endothelial cells, axonal growth cones and many types of adult stem cells, to specific areas distant from their origin is necessary for their function. We have recently shown that adult skeletal muscle stem cells (satellite cells), once activated by isolation or injury, are a highly motile population with the potential to respond to multiple guidance cues, based on their expression of classical guidance receptors. We show here that, in vivo, differentiated and regenerating myofibers dynamically express a subset of ephrin guidance ligands, as well as Eph receptors. This expression has previously only been examined in the context of muscle-nerve interactions; however, we propose that it might also play a role in satellite cell-mediated muscle repair. Therefore, we investigated whether Eph-ephrin signaling would produce changes in satellite cell directional motility. Using a classical ephrin 'stripe' assay, we found that satellite cells respond to a subset of ephrins with repulsive behavior in vitro; patterning of differentiating myotubes is also parallel to ephrin stripes. This behavior can be replicated in a heterologous in vivo system, the hindbrain of the developing quail, in which neural crest cells are directed in streams to the branchial arches and to the forelimb of the developing quail, where presumptive limb myoblasts emigrate from the somite. We hypothesize that guidance signaling might impact multiple steps in muscle regeneration, including escape from the niche, directed migration to sites of injury, cell-cell interactions among satellite cell progeny, and differentiation and patterning of regenerated muscle.
在发育和再生过程中,细胞的定向迁移,包括神经嵴细胞、内皮细胞、轴突生长锥和许多类型的成体干细胞,向远离其起源的特定区域迁移,对于它们的功能是必要的。我们最近表明,成年骨骼肌干细胞(卫星细胞)一旦被隔离或损伤激活,就是一个具有高度迁移能力的群体,有可能对多种导向信号做出反应,这取决于它们表达经典的导向受体。我们在这里表明,在体内,分化和再生的肌纤维动态表达一组 Ephrin 导向配体以及 Eph 受体。这种表达以前仅在肌肉-神经相互作用的背景下进行了检查;然而,我们提出,它也可能在卫星细胞介导的肌肉修复中发挥作用。因此,我们研究了 Eph-ephrin 信号是否会导致卫星细胞定向迁移的变化。使用经典的 Ephrin“条纹”测定法,我们发现卫星细胞在体外对一组 Ephrin 表现出排斥行为;分化的肌管的模式也与 Ephrin 条纹平行。这种行为可以在一个异源的体内系统中复制,即发育中的鹌鹑的后脑,在这个系统中,神经嵴细胞被引导成流状到达鳃弓和发育中的鹌鹑的前肢,那里假定的肢体成肌细胞从体节中迁出。我们假设,导向信号可能会影响肌肉再生的多个步骤,包括从龛中逃逸、向损伤部位定向迁移、卫星细胞后代之间的细胞-细胞相互作用,以及再生肌肉的分化和模式形成。