Department of Biochemistry, Dongguk University College of Medicine, 123 Dongdae-ro, Gyeongju 38066, Republic of Korea.
Channelopathy Research Center, Dongguk University College of Medicine, 32 Dongguk-ro, Goyang 10326, Republic of Korea.
Cells. 2023 Dec 20;13(1):9. doi: 10.3390/cells13010009.
Skeletal myogenesis is an intricate process involving the differentiation of progenitor cells into myofibers, which is regulated by actin cytoskeletal dynamics and myogenic transcription factors. Although recent studies have demonstrated the pivotal roles of actin-binding proteins (ABPs) as mechanosensors and signal transducers, the biological significance of WAVE2 (Wiskott-Aldrich syndrome protein family member 2), an ABP essential for actin polymerization, in myogenic differentiation of progenitor cells has not been investigated. Our study provides important insights into the regulatory roles played by WAVE2 in the myocardin-related transcription factor A (MRTFA)-serum response factor (SRF) signaling axis and differentiation of myoblasts. We demonstrate that WAVE2 expression is induced during myogenic differentiation and plays a pivotal role in actin cytoskeletal remodeling in C2C12 myoblasts. Knockdown of WAVE2 in C2C12 cells reduced filamentous actin levels, increased globular actin accumulation, and impaired the nuclear translocation of MRTFA. Furthermore, WAVE2 depletion in myoblasts inhibited the expression and transcriptional activity of SRF and suppressed cell proliferation in myoblasts. Consequently, WAVE2 knockdown suppressed myogenic regulatory factors (i.e., MyoD, MyoG, and SMYD1) expressions, thereby hindering the differentiation of myoblasts. Thus, this study suggests that WAVE2 is essential for myogenic differentiation of progenitor cells by modulating the mechanosensitive MRTFA-SRF axis.
骨骼肌发生是一个复杂的过程,涉及祖细胞分化为肌纤维,这一过程受到肌动蛋白细胞骨架动力学和肌生成转录因子的调节。尽管最近的研究表明肌动蛋白结合蛋白 (ABPs) 作为机械感受器和信号转导器的重要作用,但是肌生成祖细胞中,WAVE2(Wiskott-Aldrich 综合征蛋白家族成员 2)作为肌动蛋白聚合所必需的 ABP,其在肌生成分化中的生物学意义尚未得到研究。我们的研究提供了关于 WAVE2 在肌球蛋白相关转录因子 A(MRTFA)-血清反应因子(SRF)信号轴和肌母细胞分化中的调节作用的重要见解。我们证明,WAVE2 的表达在肌生成分化过程中被诱导,并在 C2C12 肌母细胞中的肌动蛋白细胞骨架重塑中发挥关键作用。在 C2C12 细胞中敲低 WAVE2 会降低丝状肌动蛋白水平,增加球状肌动蛋白的积累,并损害 MRTFA 的核易位。此外,肌母细胞中的 WAVE2 耗竭抑制了 SRF 的表达和转录活性,并抑制了肌母细胞的增殖。因此,WAVE2 的敲低抑制了肌生成调节因子(即 MyoD、MyoG 和 SMYD1)的表达,从而阻碍了肌母细胞的分化。因此,本研究表明,WAVE2 通过调节机械敏感的 MRTFA-SRF 轴对于祖细胞的肌生成分化是必不可少的。