首页> 美国卫生研究院文献>Gene Expression >A Selective Role for MRF4 in Innervated Adult Skeletal Muscle: NaV 1.4 Na+ Channel Expression Is Reduced in MRF4-Null Mice
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A Selective Role for MRF4 in Innervated Adult Skeletal Muscle: NaV 1.4 Na+ Channel Expression Is Reduced in MRF4-Null Mice

机译:MRF4在神经支配的成年骨骼肌中的选择性作用:NaRF 1.4 Na +通道表达减少MRF4空小鼠。

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摘要

The factors that regulate transcription and spatial expression of the adult skeletal muscle Na+ channel, NaV 1.4, are poorly understood. Here we tested the role of the transcription factor MRF4, one of four basic helix–loop–helix (bHLH) factors expressed in skeletal muscle, in regulation of the NaV 1.4 Na+ channel. Overexpression of MRF4 in C2C12 muscle cells dramatically elevated NaV 1.4 reporter gene expression, indicating that MRF4 is more efficacious than the other bHLH factors expressed at high levels endogenously in these cells. In vivo, MRF4 protein was found both in extrajunctional and subsynaptic muscle nuclei. To test the importance of MRF4 in NaV 1.4 gene regulation in vivo, we examined Na+ channel expression in MRF4-null mice using several techniques, including Western blotting, immunocytochemistry, and electrophysiological recording. By all methods, we found that expression of the NaV 1.4 Na+ channel was substantially reduced in MRF4-null mice, both in the surface membrane and at neuromuscular junctions. In contrast, expression of the acetylcholine receptor, and in particular its α subunit, was unchanged, indicating that MRF4 regulation of Na+ channel expression was selective. Expression of the bHLH factors myf-5, MyoD, and myogenin was increased in MRF4-null mice, but these factors were not able to fully maintain NaV 1.4 Na+ channel expression either in the extrajunctional membrane or at the synapse. Thus, MRF4 appears to play a novel and selective role in adult muscle.
机译:调节成年骨骼肌Na + 通道NaV 1.4的转录和空间表达的因素知之甚少。在这里,我们测试了转录因子MRF4在骨骼肌中表达的四个基本螺旋-环-螺旋(bHLH)因子之一在调节NaV 1.4 Na + 通道中的作用。 C2C12肌肉细胞中MRF4的过表达显着提高了NaV 1.4报告基因的表达,表明MRF4比在这些细胞中内源性高表达的其他bHLH因子更有效。在体内,在结外和突触下肌核中均发现了MRF4蛋白。为了测试MRF4在体内NaV 1.4基因调控中的重要性,我们使用了多种技术,包括Western印迹,免疫细胞化学和电生理学记录,检查了MRF4无基因小鼠中Na + 通道的表达。通过所有方法,我们发现NaV 1.4 Na + 通道的表达在MRF4缺失的小鼠中,无论是在表面膜还是在神经肌肉接头处均显着降低。相反,乙酰胆碱受体,特别是其α亚基的表达没有改变,表明MRF4对Na + 通道表达的调节是选择性的。在MRF4基因缺失的小鼠中,bHLH因子myf-5,MyoD和肌生成素的表达增加,但这些因子不能在结膜外或在结膜上完全维持NaV 1.4 Na + 通道的表达。突触。因此,MRF4似乎在成年肌肉中发挥了新颖而选择性的作用。

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