Center for Biomedical Sciences, National Institute of Health, Korea Center for Disease Control and Prevention, 194 Tongillo, Eunpyeong-gu, Seoul, Republic of Korea.
Cell Signal. 2009 Dec;21(12):1910-7. doi: 10.1016/j.cellsig.2009.08.008. Epub 2009 Sep 3.
The role of extracellular signal-regulated kinase (ERK) signaling in skeletal myogenesis has been reported to be both stimulatory and inhibitory. We propose that this discrepancy may arise from the stage-specific, different roles of mitogen-activated protein kinase kinase 1 (MEK1). We found that the phosphorylated MEK1 level of differentiating C2C12 cells was low on day 1 (early-stage) and reached a maximum on days 2-3 (mid-stage). Cells treated at early stage with the MEK-specific inhibitors, PD184352 and U0126, reduced both the MHC protein level and MCK promoter activity, demonstrating that high MEK1 activity at the mid-stage is required for myogenic differentiation. In contrast, treatment with the ERK-specific inhibitors, FR180204 and ERK inhibitor I, had no effect. However, because the sustained overexpression of constitutively active MEK1 inhibits myogenic differentiation, we further analyzed the stage-specific role of MEK1 using the Tet-Off expression system. The results demonstrated that myogenic differentiation was inhibited if active MEK1 expression was induced earlier than day 1 in differentiation condition, but stimulated if induced after that, demonstrating that activated MEK1 plays differential roles depending on activation time. In addition, the induction of active MEK1 at 12h enhanced the Id2 protein level, while the induction at 36h resulted in reduction. Thus, MEK1 plays stage-specific and contrary roles in myogenesis, and MEK1 activated at the mid-stage promotes muscle differentiation independent of ERK.
细胞外信号调节激酶(ERK)信号在成肌中的作用既有刺激作用,也有抑制作用。我们提出,这种差异可能源于丝裂原活化蛋白激酶激酶 1(MEK1)在特定阶段的不同作用。我们发现,分化的 C2C12 细胞中磷酸化 MEK1 的水平在第 1 天(早期)较低,在第 2-3 天(中期)达到最大值。在早期阶段用 MEK 特异性抑制剂 PD184352 和 U0126 处理细胞,降低了 MHC 蛋白水平和 MCK 启动子活性,表明中期高 MEK1 活性是肌生成分化所必需的。相比之下,用 ERK 特异性抑制剂 FR180204 和 ERK 抑制剂 I 处理没有效果。然而,由于持续过表达组成性激活的 MEK1 抑制肌生成分化,我们使用 Tet-Off 表达系统进一步分析了 MEK1 的特定阶段作用。结果表明,如果在分化条件下将活性 MEK1 的表达诱导早于第 1 天,肌生成分化就会受到抑制,但如果在那之后诱导,则会受到刺激,这表明激活的 MEK1 根据激活时间发挥不同的作用。此外,在 12h 时诱导活性 MEK1 会增加 Id2 蛋白水平,而在 36h 时诱导则会降低。因此,MEK1 在成肌中发挥特定阶段和相反的作用,中期激活的 MEK1 独立于 ERK 促进肌肉分化。