Vilchinskaya Natalia A, Sergeeva Ksenia V, Shenkman Boris S, Mirzoev Timur M
Myology Laboratory, Institute of Biomedical Problems of the Russian Academy of Sciences, Moscow, Russia.
FEBS Open Bio. 2025 Jun;15(6):940-948. doi: 10.1002/2211-5463.70008. Epub 2025 Feb 17.
Mechanically activated (MA) Piezo1 channels play an important role in both normal physiology and pathological dysfunction in multiple tissues and organs. In skeletal muscle cells, Piezo1 channels are involved in the regulation of postnatal myogenesis and muscle regeneration after injury. To further understand the role of MA Piezo1 channels as potential critical sensors of mechanical perturbations during muscle contractions, we studied the possible contribution of MA Piezo1 channels to enhanced protein synthetic response of C2C12 myotubes to mechanical simulation. C2C12 myotubes were subjected to mechanical stimulation by electrical pulse stimulation (EPS) alone or EPS in combination with Yoda1, Gadolinium or Yoda1 + Gadolinium. EPS alone elicited an increase in anabolic signaling and protein synthesis (PS). Incubation with Yoda1 during EPS enhanced anabolic signaling and PS compared to EPS alone. Gadolinium or Yoda1 + gadolinium during EPS abolished or diminished the Yoda1 + EPS-induced effects on anabolic signaling and PS. Our work demonstrates that chemical activation of Piezo1 channels during mechanical stimulation contributes to enhanced protein anabolism in C2C12 myotubes.
机械激活(MA)的Piezo1通道在多个组织和器官的正常生理功能和病理功能障碍中均发挥着重要作用。在骨骼肌细胞中,Piezo1通道参与出生后肌生成的调节以及损伤后肌肉的再生。为了进一步了解MA Piezo1通道作为肌肉收缩过程中机械扰动潜在关键传感器的作用,我们研究了MA Piezo1通道对增强C2C12肌管对机械模拟的蛋白质合成反应的可能贡献。C2C12肌管用单独的电脉冲刺激(EPS)或EPS与Yoda1、钆或Yoda1 + 钆联合进行机械刺激。单独的EPS引起合成代谢信号传导和蛋白质合成(PS)增加。与单独的EPS相比,在EPS期间与Yoda1共同孵育可增强合成代谢信号传导和PS。在EPS期间使用钆或Yoda1 + 钆消除或减弱了Yoda1 + EPS对合成代谢信号传导和PS的诱导作用。我们的研究表明,在机械刺激过程中对Piezo1通道进行化学激活有助于增强C2C12肌管中的蛋白质合成代谢。