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MEF2 responds to multiple calcium-regulated signals in the control of skeletal muscle fiber type

机译:MEF2在控制骨骼肌纤维类型中响应多种钙调节信号

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摘要

Different patterns of motor nerve activity drive distinctive programs of gene transcription in skeletal muscles, thereby establishing a high degree of metabolic and physiological specialization among myofiber subtypes. Recently, we proposed that the influence of motor nerve activity on skeletal muscle fiber type is transduced to the relevant genes by calcineurin, which controls the functional activity of NFAT (nuclear family of activated T cell) proteins. Here we demonstrate that calcineurin-dependent gene regulation in skeletal myocytes is mediated also by MEF2 transcription factors, and is integrated with additional calcium-regulated signaling inputs, specifically calmodulin-dependent protein kinase activity. In skeletal muscles of transgenic mice, both NFAT and MEF2 binding sites are necessary for properly regulated function of a slow fiber-specific enhancer, and either forced expression of activated calcineurin or motor nerve stimulation up-regulates a MEF2-dependent reporter gene. These results provide new insights into the molecular mechanisms by which specialized characteristics of skeletal myofiber subtypes are established and maintained.
机译:运动神经活动的不同模式在骨骼肌中驱动独特的基因转录程序,从而在肌纤维亚型之间建立高度的代谢和生理专长。最近,我们提出了钙调神经磷酸酶将运动神经活动对骨骼肌纤维类型的影响转导至相关基因,钙调神经磷酸酶控制NFAT(活化T细胞核家族)蛋白的功能活性。在这里,我们证明骨骼肌细胞中钙调磷酸酶依赖性基因的调节也由MEF2转录因子介导,并与其他钙调节信号输入,特别是钙调蛋白依赖性蛋白激酶活性整合在一起。在转基因小鼠的骨骼肌中,NFAT和MEF2结合位点对于缓慢调节纤维特异性增强剂的功能都是必需的,并且激活钙调神经磷酸酶的强迫表达或运动神经刺激均会上调MEF2依赖的报告基因。这些结果为建立和维持骨骼肌纤维亚型的特殊特征的分子机制提供了新见解。

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