Ekmark Merete, Rana Zaheer Ahmad, Stewart Greg, Hardie D Grahame, Gundersen Kristian
Department of Molecular Biosciences, University of Oslo, PO Box 1041, Blindern, N-0316 Oslo, Norway.
J Physiol. 2007 Oct 15;584(Pt 2):637-50. doi: 10.1113/jphysiol.2007.141457. Epub 2007 Aug 30.
Elucidating the molecular pathways linking electrical activity to gene expression is necessary for understanding the effects of exercise on muscle. Fast muscles express higher levels of MyoD and lower levels of myogenin than slow muscles, and we have previously linked myogenin to expression of oxidative enzymes. We here report that in slow muscles, compared with fast, 6 times as much of the MyoD is in an inactive form phosphorylated at T115. In fast muscles, 10 h of slow electrical stimulation had no effect on the total MyoD protein level, but the fraction of phosphorylated MyoD was increased 4-fold. Longer stimulation also decreased the total level of MyoD mRNA and protein, while the level of myogenin protein was increased. Fast patterned stimulation did not have any of these effects. Overexpression of wild type MyoD had variable effects in active slow muscles, but increased expression of fast myosin heavy chain in denervated muscles. In normally active soleus muscles, MyoD mutated at T115 (but not at S200) increased the number of fibres containing fast myosin from 50% to 85% in mice and from 13% to 62% in rats. These data establish de-phosphorylated active MyoD as a link between the pattern of electrical activity and fast fibre type in adult muscles.
阐明将电活动与基因表达联系起来的分子途径对于理解运动对肌肉的影响至关重要。与慢肌相比,快肌中MyoD的表达水平较高,而肌细胞生成素的表达水平较低,并且我们之前已将肌细胞生成素与氧化酶的表达联系起来。我们在此报告,在慢肌中,与快肌相比,处于T115磷酸化失活形式的MyoD是快肌中的6倍。在快肌中,10小时的慢电刺激对MyoD总蛋白水平没有影响,但磷酸化MyoD的比例增加了4倍。更长时间的刺激也降低了MyoD mRNA和蛋白的总水平,而肌细胞生成素蛋白的水平则升高。快速模式刺激没有这些作用。野生型MyoD的过表达在活跃的慢肌中具有不同的作用,但在失神经肌肉中增加了快肌球蛋白重链的表达。在正常活跃的比目鱼肌中,T115(而非S200)发生突变的MyoD使含有快肌球蛋白的纤维数量在小鼠中从50%增加到85%,在大鼠中从13%增加到62%。这些数据确立了去磷酸化的活性MyoD作为成年肌肉电活动模式与快肌纤维类型之间的联系。