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首页> 外文期刊>American Journal of Physiology >Skeletal muscle denervation causes skeletal muscle atrophy through a pathway that involves both Gadd45a and HDAC4.
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Skeletal muscle denervation causes skeletal muscle atrophy through a pathway that involves both Gadd45a and HDAC4.

机译:骨骼肌失神经通过涉及Gadd45a和HDAC4的途径引起骨骼肌萎缩。

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Skeletal muscle denervation causes muscle atrophy via complex molecular mechanisms that are not well understood. To better understand these mechanisms, we investigated how muscle denervation increases growth arrest and DNA damage-inducible 45a (Gadd45a) mRNA in skeletal muscle. Previous studies established that muscle denervation strongly induces Gadd45a mRNA, which increases Gadd45a, a small myonuclear protein that is required for denervation-induced muscle fiber atrophy. However, the mechanism by which denervation increases Gadd45a mRNA remained unknown. Here, we demonstrate that histone deacetylase 4 (HDAC4) mediates induction of Gadd45a mRNA in denervated muscle. Using mouse models, we show that HDAC4 is required for induction of Gadd45a mRNA during muscle denervation. Conversely, forced expression of HDAC4 is sufficient to increase skeletal muscle Gadd45a mRNA in the absence of muscle denervation. Moreover, Gadd45a mediates several downstream effects of HDAC4, including induction of myogenin mRNA, induction of mRNAs encoding the embryonic nicotinic ace-tylcholine receptor, and, most importantly, skeletal muscle fiber atrophy. Because Gadd45a induction is also a key event in fasting-induced muscle atrophy, we tested whether HDAC4 might also contribute to Gadd45a induction during fasting. Interestingly, however, HDAC4 is not required for fasting-induced Gadd45a expression or muscle atrophy. Furthermore, activating transcription factor 4 (ATF4), which contributes to fasting-induced Gadd45a expression, is not required for denervation-induced Gadd45a expression or muscle atrophy. Collectively, these results identify HDAC4 as an important regulator of Gadd45a in denervation-induced muscle atrophy and elucidate Gadd45a as a convergence point for distinct upstream regulators during muscle denervation and fasting.
机译:骨骼肌的去神经支配是通过尚不清楚的复杂分子机制引起的肌肉萎缩。为了更好地了解这些机制,我们研究了肌肉神经支配如何增加骨骼肌中的生长停滞和DNA损伤诱导型45a(Gadd45a)mRNA。先前的研究证实,肌肉去神经支配强烈诱导Gadd45a mRNA,从而增加了Gadd45a(神经支配肌引起的肌纤维萎缩所必需的一种小的肌核蛋白)。然而,去神经增加Gadd45a mRNA的机制仍然未知。在这里,我们证明了组蛋白脱乙酰基酶4(HDAC4)介导了失神经肌肉中Gadd45a mRNA的诱导。使用小鼠模型,我们显示HDAC4是肌肉去神经过程中诱导Gadd45a mRNA所必需的。相反,在不存在神经失神经的情况下,HDAC4的强制表达足以增加骨骼肌Gadd45a mRNA。此外,Gadd45a介导HDAC4的几种下游作用,包括诱导肌生成素mRNA,诱导编码胚胎烟碱型乙酰胆碱受体的mRNA,以及最重要的是骨骼肌纤维萎缩。由于Gadd45a诱导也是禁食引起的肌肉萎缩的关键事件,因此我们测试了HDAC4是否也可能在禁食期间也有助于Gadd45a诱导。但是,有趣的是,空腹诱导的Gadd45a表达或肌肉萎缩不需要HDAC4。此外,去神经诱导的Gadd45a表达或肌肉萎缩不需要激活的转录因子4(ATF4),它有助于空腹诱导的Gadd45a表达。总体而言,这些结果确定HDAC4是失神经引起的肌肉萎缩中Gadd45a的重要调节剂,并阐明了Gadd45a是肌肉失神经和禁食期间不同上游调节剂的汇合点。

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