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Expression of myocyte enhancer factor-2 and downstream genes in ground squirrel skeletal muscle during hibernation

机译:冬眠地鼠松鼠骨骼肌中肌细胞增强因子-2及其下游基因的表达

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Myocyte enhancer factor-2 (MEF2) transcription factors regulate the expression of a variety of genes encoding contractile proteins and other proteins associated with muscle performance. We proposed that changes in MEF2 levels and expression of selected downstream targets would aid the skeletal muscle of thirteen-lined ground squirrels (Spermophilus tridecemlineatus) in meeting metabolic challenges associated with winter hibernation; e.g., cycles of torpor–arousal, body temperature that can fall to near 0°C, long periods of inactivity that could lead to atrophy. MEF2A protein levels were significantly elevated when animals were in torpor (maximally 2.8-fold higher than in active squirrels) and the amount of phosphorylated active MEF2A Thr312 increased during entrance into torpor. MEF2C levels also rose significantly during entrance and torpor as did the amount of phosphorylated MEF2C Ser387. Furthermore, both MEF2 members showed elevated amounts in the nuclear fraction during torpor as well as enhanced binding to DNA indicating that MEF2-mediated gene expression was up-regulated in torpid animals. Indeed, the protein products of two MEF2 downstream gene targets increased in muscle during torpor (glucose transporter isoforms 4; GLUT4) or early arousal (myogenic differentiation; MyoD). Significant increases in Glut4 and MyoD mRNA transcript levels correlated with the rise in protein product levels and provided further support for the activation of MEF2-mediated gene expression in the hibernator. Transcript levels of Mef2a and Mef2c also showed time-dependent patterns with levels of both being highest during arousal from torpor. The data suggest a significant role for MEF2-mediated gene transcription in the selective adjustment of muscle protein complement over the course of torpor–arousal cycles.
机译:肌细胞增强因子2(MEF2)转录因子调节编码收缩蛋白和其他与肌肉性能相关的蛋白的各种基因的表达。我们建议改变MEF2水平和选定下游靶点的表达将有助于十三只内衬松鼠(Spermophilus tridecemlineatus)的骨骼肌应对冬季冬眠相关的代谢挑战。例如,周转的循环,体温可能下降到接近0°​​C,长时间不活动可能导致萎缩。当动物进入to锅中时,MEF2A蛋白水平显着升高(最大比活动松鼠高2.8倍),磷酸化的活性MEF2A Thr312的数量在进入r锅时会增加。 MEF2C的水平在进入和烘烤过程中也显着上升,磷酸化的MEF2C Ser387的量也显着上升。此外,两个MEF2成员在torpor中的核级分中均显示出升高的量,并增强了与DNA的结合,这表明MEF2介导的基因表达在龟性动物中被上调。确实,两个MEF2下游基因靶标的蛋白质产物在torpor(葡萄糖转运蛋白亚型4; GLUT4)或早期唤醒(肌原性分化; MyoD)期间肌肉中增加。 Glut4和MyoD mRNA转录水平的显着升高与蛋白质产物水平的升高相关,并为冬眠器中MEF2介导的基因表达的激活提供了进一步的支持。 Mef2a和Mef2c的转录物水平也显示出时间依赖性模式,在被唤醒时,两者的水平都最高。数据表明,MEF2介导的基因转录在躯体-听觉循环过程中在选择性调节肌肉蛋白中起着重要作用。

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