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在鼠 WTt 成肌细胞系中可以诱导向缓慢氧化或快速糖酵解表型的转变。

Transitions towards either slow-oxidative or fast-glycolytic phenotype can be induced in the murine WTt myogenic cell line.

机构信息

Laboratoire CRRET, UMR CNRS 7149, Université Paris 12, Avenue du Général de Gaulle, 94010 Créteil, France.

出版信息

J Cell Biochem. 2010 Sep 1;111(1):82-93. doi: 10.1002/jcb.22665.

Abstract

Contraction and energy metabolism are functions of skeletal muscles co-regulated by still largely unknown signals. To help elucidating these interconnecting pathways, we are developing new cellular models that will allow to control the switch from a neonatal to an adult slow-oxidative or fast-glycolytic phenotype of myofibers, during in vitro differentiation. Thus, our purpose was to direct the differentiation of the newly characterized WTt clone, from a mixed towards either fast or slow phenotype, by modifying amounts of two transcription factors respectively involved in control of glycolytic and oxidative energy metabolism, namely HIF-1alpha and PPARdelta. Our data support the idea that HIF-1alpha protein stabilization would favor expression of fast phenotypic markers, accompanied or not by a decreased expression of slow markers, depending on treatment conditions. Conversely, PPARdelta over-expression appears to enhance the slow-oxidative phenotype of WTt myotubes. Furthermore, we have observed that expression of PGC-1alpha, a coregulator of PPAR, is also modified in this cell line upon conditions that stabilize HIF-1alpha protein. This observation points to the existence of a regulatory link between pathways controlled by the two transcription factors HIF-1alpha and PPARdelta. Therefore, these cells should be useful to analyze the balance between oxidative and glycolytic energy production as a function of phenotypic transitions occurring during myogenic maturation. The newly characterized murine WTt clone will be a good tool to investigate molecular mechanisms implicating HIF-1alpha and PPARdelta in the coordinated metabolic and contractile regulations involved in myogenesis.

摘要

收缩和能量代谢是骨骼肌肉的功能,受许多尚未可知的信号共同调控。为了阐明这些相互关联的途径,我们正在开发新的细胞模型,以便在体外分化过程中控制成肌细胞从新生儿型向成人型慢氧化或快糖酵解表型的转变。因此,我们的目的是通过改变两种转录因子的数量,分别调节糖酵解和氧化能量代谢的控制,将新鉴定的 WTt 克隆从混合表型向快或慢表型定向分化,这两种转录因子分别是 HIF-1alpha 和 PPARdelta。我们的数据支持这样的观点,即 HIF-1alpha 蛋白的稳定化将有利于快表型标志物的表达,伴随着或不伴随着慢表型标志物的表达减少,这取决于处理条件。相反,PPARdelta 的过表达似乎增强了 WTt 肌管的慢氧化表型。此外,我们观察到,PGC-1alpha 的表达,一种 PPAR 的共调节因子,在这种细胞系中也会因稳定 HIF-1alpha 蛋白的条件而改变。这一观察结果表明,两种转录因子 HIF-1alpha 和 PPARdelta 控制的途径之间存在调节联系。因此,这些细胞应该可以用来分析氧化和糖酵解能量产生之间的平衡,作为成肌成熟过程中发生的表型转变的功能。新鉴定的鼠 WTt 克隆将是一个很好的工具,用于研究 HIF-1alpha 和 PPARdelta 参与成肌代谢和收缩调节的分子机制。

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