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首页> 外文期刊>American Journal of Physiology >Regulation of myostatin expression and myoblast differentiation by FoxO and SMAD transcription factors.
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Regulation of myostatin expression and myoblast differentiation by FoxO and SMAD transcription factors.

机译:FoxO和SMAD转录因子调节肌生长抑制素表达和成肌细胞分化。

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Myostatin, a member of the transforming growth factor (TGF)-beta family, plays an important role in regulating skeletal muscle growth and differentiation. Here we examined the role of FoxO1 and SMAD transcription factors in regulating myostatin gene expression and myoblast differentiation in C(2)C(12) myotubes in vitro. Both myostatin and FoxO1 mRNA expression were greater in fast- vs. slow-twitch skeletal muscles in vivo. Moreover, expression of a constitutively active form of FoxO1 increased myostatin mRNA and increased activity of a myostatin promoter reporter construct in differentiated C(2)C(12) myotubes. Mutagenesis of highly conserved FoxO or SMAD binding sites significantly decreased myostatin promoter activity, and binding assays showed that both FoxO1 and SMADs bind to their respective sites in the myostatin promoter. Treatment with TGF-beta and/or overexpression of SMAD2, -3, or -4 also resulted in a significant increase in myostatin promoter activity. Treatment with TGF-beta along with overexpression of SMAD2 and FoxO1 resulted in the largest increase in myostatin promoter activity. Finally, TGF-beta treatment and SMAD2 overexpression greatly potentiated FoxO1-mediated suppression of myoblast differentiation. Together these data demonstrate that FoxO1 and SMAD transcription factors regulate the expression of myostatin and contribute to the control of muscle cell growth and differentiation.
机译:肌生长抑制素是转化生长因子(TGF)-β家族的成员,在调节骨骼肌生长和分化中起重要作用。在这里,我们检查了FoxO1和SMAD转录因子在体外调节C(2)C(12)肌管中myostatin基因表达和成肌细胞分化中的作用。体内快肌和慢肌骨骼肌中肌生长抑制素和FoxO1 mRNA的表达均较高。此外,FoxO1的组成型活性形式的表达增加了肌肉生长抑制素mRNA和增加了肌肉生长抑制素启动子报告基因构建物在分化的C(2)C(12)肌管中的活性。高度保守的FoxO或SMAD结合位点的诱变作用显着降低了Myostatin启动子的活性,结合实验表明FoxO1和SMAD均与Myostatin启动子中的各自位点结合。用TGF-β和/或SMAD2,-3或-4的过表达治疗也导致肌生长抑制素启动子活性显着增加。使用TGF-β以及SMAD2和FoxO1的过表达导致肌生长抑制素启动子活性的最大增加。最后,TGF-β处理和SMAD2过表达大大增强了FoxO1介导的成肌细胞分化抑制。这些数据一起证明FoxO1和SMAD转录因子调节肌肉生长抑制素的表达,并有助于控制肌肉细胞的生长和分化。

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