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TRPC3 channels confer cellular memory of recent neuromuscular activity

机译:TRPC3通道赋予细胞最近神经肌肉活动的记忆

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摘要

Skeletal muscle adapts to different patterns of motor nerve activity by alterations in gene expression that match specialized properties of contraction, metabolism, and muscle mass to changing work demands (muscle plasticity). Calcineurin, a calcium/calmodulin-dependent, serine–threonine protein phosphatase, has been shown to control programs of gene expression in skeletal muscles, as in other cell types, through the transcription factor nuclear factor of activated T cells (NFAT). This study provides evidence that the function of NFAT as a transcriptional activator is regulated by neuromuscular stimulation in muscles of intact animals and that calcium influx from the transient receptor potential (TRPC3) channel is an important determinant of NFAT activity. Expression of TRPC3 channels in skeletal myocytes is up-regulated by neuromuscular activity in a calcineurin-dependent manner. These data suggest a mechanism for cellular memory in skeletal muscles whereby repeated bouts of contractile activity drive progressively greater remodeling events.
机译:骨骼肌通过基因表达的改变来适应运动神经活动的不同模式,这些改变使收缩,新陈代谢和肌肉质量的特殊特性与不断变化的工作需求(肌肉可塑性)相匹配。钙调神经磷酸酶是一种钙/钙调蛋白依赖性的丝氨酸-苏氨酸蛋白磷酸酶,已被证明可通过活化T细胞的转录因子核因子(如其他细胞类型)来控制骨骼肌中基因表达的程序。这项研究提供了证据,即NFAT作为转录激活因子的功能受到完整动物肌肉中神经肌肉刺激的调节,并且来自瞬时受体电位(TRPC3)通道的钙流入是NFAT活性的重要决定因素。骨骼肌细胞中TRPC3通道的表达以钙调神经磷酸酶依赖性方式被神经肌肉活动上调。这些数据表明骨骼肌细胞记忆的一种机制,由此反复的收缩活动会逐渐推动更大的重塑事件。

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