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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Change in Nox4 expression is accompanied by changes in myogenic marker expression in differentiating C2C12 myoblasts
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Change in Nox4 expression is accompanied by changes in myogenic marker expression in differentiating C2C12 myoblasts

机译:在区分C2C12成肌细胞中,Nox4表达的变化伴随着成肌标志物表达的变化

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摘要

Myoblast differentiation is mediated by a cascade of changes in gene expression including transcription factors such as myogenin. Subsequent to myoblast differentiation, there is an increase in expression of the transmembrane protein NADPH oxidase (Nox). Nox is one of the primary factors for the generation of reactive oxygen species (ROS) in myogenic (C2C12) cells. Recently, ROS have been shown to be important regulators of several intracellular signaling pathways, and the full extent of their regulatory roles is yet to be discovered. In the present study, qRT PCR analysis demonstrated that Nox4 isoform is primarily expressed in differentiating C2C12 cells and contributes to the generation of ROS in C2C12 myoblast during differentiation. Over-expression and silencing of Nox4 expression during myoblast differentiation was accompanied by a reduction in intracellular ROS concentrations and an alteration in the expression patterns of Myf5, Pax7, MyoD1, and myogenin. This modulation was found to be associated with ERK1/2 phosphorylation. In both over-expression and reduced expression of Nox4, we found significant reductions in ERK1/2 phosphorylation. This indicates that cellular differentiation may be affected by Nox4-mediated endogenous ROS generation. These data suggest a new opportunity to study the temporal expression of Nox4 in the generation of ROS accompanying changes in myogenic differentiation.
机译:成肌细胞的分化是由一系列基因表达的变化介导的,这些基因表达的变化包括转录因子,例如肌生成素。成肌细胞分化后,跨膜蛋白NADPH氧化酶(Nox)的表达增加。 Nox是在成肌(C2C12)细胞中产生活性氧(ROS)的主要因素之一。最近,ROS已被证明是几种细胞内信号通路的重要调节剂,其调节作用的全部范围尚未被发现。在本研究中,qRT PCR分析表明Nox4亚型主要在分化的C2C12细胞中表达,并在分化过程中促进C2C12成肌细胞中ROS的生成。成肌细胞分化过程中Nox4表达的过度表达和沉默伴随着细胞内ROS浓度的降低以及Myf5,Pax7,MyoD1和肌生成素表达模式的改变。发现该调节与ERK1 / 2磷酸化有关。在Nox4的过表达和表达减少中,我们发现ERK1 / 2磷酸化显着降低。这表明细胞分化可能受Nox4介导的内源性ROS产生的影响。这些数据提供了一个新的机会来研究伴随肌原性分化变化的ROS产生中Nox4的时间表达。

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