Laboratory of Animal Regeneration Systemology, Department of Life Sciences, School of Agriculture, Meiji University, Kanagawa, 214-8571, Japan.
Department of Molecular Biology and Biochemistry, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima, 734-8553, Japan.
Development. 2023 May 15;150(10). doi: 10.1242/dev.201101. Epub 2023 May 29.
Movement of the vertebrate body is supported by the connection of muscle, tendon and bone. Each skeletal muscle in the vertebrate body has a unique shape and attachment site; however, the mechanism that ensures reproducible muscle patterning is incompletely understood. In this study, we conducted targeted cell ablation using scleraxis (Scx)-Cre to examine the role of Scx-lineage cells in muscle morphogenesis and attachment in mouse embryos. We found that muscle bundle shapes and attachment sites were significantly altered in embryos with Scx-lineage cell ablation. Muscles in the forelimb showed impaired bundle separation and limb girdle muscles distally dislocated from their insertion sites. Scx-lineage cells were required for post-fusion myofiber morphology, but not for the initial segregation of myoblasts in the limb bud. Furthermore, muscles could change their attachment site, even after formation of the insertion. Lineage tracing suggested that the muscle patterning defect was primarily attributed to the reduction of tendon/ligament cells. Our study demonstrates an essential role of Scx-lineage cells in the reproducibility of skeletal muscle attachment, in turn revealing a previously unappreciated tissue-tissue interaction in musculoskeletal morphogenesis.
脊椎动物的身体运动是由肌肉、肌腱和骨骼的连接支撑的。脊椎动物体内的每块骨骼肌都有独特的形状和附着部位;然而,确保肌肉可重复模式形成的机制尚不完全清楚。在这项研究中,我们使用 Scleraxis (Scx)-Cre 进行了靶向细胞消融,以研究 Scx 谱系细胞在小鼠胚胎中肌肉形态发生和附着中的作用。我们发现,Scx 谱系细胞消融的胚胎中肌肉束的形状和附着部位发生了显著改变。前肢肌肉的束分离受损,肩带肌肉从其附着部位向远端脱位。Scx 谱系细胞对于融合后的肌纤维形态是必需的,但对于肢体芽中肌母细胞的初始分离不是必需的。此外,即使在插入形成后,肌肉也可以改变其附着部位。谱系追踪表明,肌肉模式缺陷主要归因于肌腱/韧带细胞的减少。我们的研究表明,Scx 谱系细胞在骨骼肌附着的可重复性中起着重要作用,从而揭示了在骨骼肌肉形态发生中以前未被重视的组织-组织相互作用。