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A calcineurin-dependent transcriptional pathway controls skeletal muscle fiber type

机译:钙调磷酸酶依赖性转录途径控制骨骼肌纤维类型

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摘要

Slow- and fast-twitch myofibers of adult skeletal muscles express unique sets of muscle-specific genes, and these distinctive programs of gene expression are controlled by variations in motor neuron activity. It is well established that, as a consequence of more frequent neural stimulation, slow fibers maintain higher levels of intracellular free calcium than fast fibers, but the mechanisms by which calcium may function as a messenger linking nerve activity to changes in gene expression in skeletal muscle have been unknown. Here, fiber-type-specific gene expression in skeletal muscles is shown to be controlled by a signaling pathway that involves calcineurin, a cyclosporin-sensitive, calcium-regulated serine/threonine phosphatase. Activation of calcineurin in skeletal myocytes selectively up-regulates slow-fiber-specific gene promoters. Conversely, inhibition of calcineurin activity by administration of cyclosporin A to intact animals promotes slow-to-fast fiber transformation. Transcriptional activation of slow-fiber-specific transcription appears to be mediated by a combinatorial mechanism involving proteins of the NFAT and MEF2 families. These results identify a molecular mechanism by which different patterns of motor nerve activity promote selective changes in gene expression to establish the specialized characteristics of slow and fast myofibers.
机译:成年骨骼肌的慢速和快跳肌纤维表达独特的一组肌肉特异性基因,而这些独特的基因表达程序受运动神经元活动的变化控制。众所周知,由于较频繁的神经刺激,慢纤维比快纤维保持较高的细胞内游离钙水平,但钙可能起使神经活性与骨骼肌基因表达变化联系的信使作用。一直未知。在这里,骨骼肌中纤维类型特异性基因的表达受信号通路的控制,该信号通路涉及钙调神经磷酸酶,钙环磷酸酶是一种环孢菌素敏感的,钙调节的丝氨酸/苏氨酸磷酸酶。钙调神经磷酸酶在骨骼肌细胞中的激活选择性上调慢纤维特异性基因启动子。相反,通过向完整的动物施用环孢菌素A来抑制钙调神经磷酸酶活性,可以促进从慢到快的纤维转化。慢纤维特异性转录的转录激活似乎是由涉及NFAT和MEF2家族蛋白的组合机制介导的。这些结果确定了一种分子机制,通过该分子机制,运动神经活动的不同模式促进了基因表达的选择性变化,从而建立了慢肌纤维和快肌纤维的特殊特征。

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