Nagata Yosuke, Iitsuka Hiroto, Hagiwara Tomoharu
Department of Bioscience, Faculty of Life Science, Okayama University of Science, Okayama, Japan.
Department of Natural Science, Graduate School of Science and Engineering, Okayama University of Science, Okayama, Japan.
In Vitro Cell Dev Biol Anim. 2025 Jun 30. doi: 10.1007/s11626-025-01071-w.
Skeletal muscle regeneration depends on satellite cells that maintain tissue homeostasis through self-renewal and the production of myoblasts that differentiate into mature myofibers. Dysregulation of these processes can lead to muscle degeneration, highlighting the need to elucidate their molecular mechanisms. In this study, we investigated the role of the Grb2/Sos1 signaling pathway in regulating satellite cell self-renewal and differentiation using C2C12 cells. Knockdown of either Grb2 or Sos1 significantly reduced the formation of Bcl-2-positive reserve cells and increased the proportion of differentiated myotubes. Conversely, forced expression of Grb2 increased the number of reserve cells, whereas the Grb2 P49L mutant, which disrupts its interaction with Sos1, decreased reserve cell formation and resulted in thinner myotubes. Although forced expression of Sos1 alone did not significantly increase reserve cell numbers, the chimeric protein cSos-SH2, which combines elements of Grb2 and Sos1, produced a pronounced increase of reserve cells. These results demonstrate that a precise balance between Grb2 and Sos1, along with their coordinated subcellular localization, is critical for controlling reserve cell populations. Activated by growth factor receptor tyrosine kinases and extracellular matrix/integrin interactions, the Grb2/Sos1 signaling pathway is critical for maintaining the muscle satellite cell pool, thereby playing an essential role in muscle regeneration.
骨骼肌再生依赖于卫星细胞,这些卫星细胞通过自我更新和产生分化为成熟肌纤维的成肌细胞来维持组织稳态。这些过程的失调会导致肌肉退化,这凸显了阐明其分子机制的必要性。在本研究中,我们使用C2C12细胞研究了Grb2/Sos1信号通路在调节卫星细胞自我更新和分化中的作用。敲低Grb2或Sos1均可显著减少Bcl-2阳性储备细胞的形成,并增加分化肌管的比例。相反,强制表达Grb2可增加储备细胞的数量,而破坏其与Sos1相互作用的Grb2 P49L突变体则减少了储备细胞的形成,并导致肌管变薄。虽然单独强制表达Sos1并没有显著增加储备细胞的数量,但结合了Grb2和Sos1元件的嵌合蛋白cSos-SH2却显著增加了储备细胞的数量。这些结果表明,Grb2和Sos1之间的精确平衡及其协调的亚细胞定位对于控制储备细胞群体至关重要。Grb2/Sos1信号通路由生长因子受体酪氨酸激酶和细胞外基质/整合素相互作用激活,对于维持肌肉卫星细胞池至关重要,从而在肌肉再生中发挥重要作用。