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首页> 外文期刊>Non-Coding RNA >Long Non-Coding RNA Myoparr Regulates GDF5 Expression in Denervated Mouse Skeletal Muscle
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Long Non-Coding RNA Myoparr Regulates GDF5 Expression in Denervated Mouse Skeletal Muscle

机译:长的非编码RNA Myoparr调节失神经小鼠骨骼肌中的GDF5表达。

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Skeletal muscle is a highly plastic tissue and decreased skeletal muscle mass (muscle atrophy) results in deteriorated motor function and perturbed body homeostasis. Myogenin promoter-associated long non-coding RNA (lncRNA) Myoparr promotes skeletal muscle atrophy caused by surgical denervation; however, the precise molecular mechanism remains unclear. Here, we examined the downstream genes of Myoparr during muscle atrophy following denervation of tibialis anterior (TA) muscles in C57BL/6J mice. Myoparr knockdown affected the expression of 848 genes. Sixty-five of the genes differentially regulated by Myoparr knockdown coded secretory proteins. Among these 65 genes identified in Myoparr -depleted skeletal muscles after denervation, we focused on the increased expression of growth/differentiation factor 5 (GDF5), an inhibitor of muscle atrophy. Myoparr knockdown led to activated bone morphogenetic protein (BMP) signaling in denervated muscles, as indicated by the increased levels of phosphorylated Smad1/5/8. Our detailed evaluation of downstream genes of Myoparr also revealed that Myoparr regulated differential gene expression between myogenic differentiation and muscle atrophy. This is the first report demonstrating the in vivo role of Myoparr in regulating BMP signaling in denervated muscles. Therefore, lncRNAs that have inhibitory activity on BMP signaling may be putative therapeutic targets for skeletal muscle atrophy.
机译:骨骼肌是高度可塑的组织,骨骼肌质量下降(肌肉萎缩)会导致运动功能下降和机体稳态紊乱。 Myogenin启动子相关的长非编码RNA(lncRNA)Myoparr促进由手术神经支配引起的骨骼肌萎缩。然而,确切的分子机制仍不清楚。在这里,我们检查了C57BL / 6J小鼠胫前肌(TA)肌肉失神经后肌肉萎缩过程中Myoparr的下游基因。 Myoparr基因敲低影响了848个基因的表达。 Myoparr组合式编码分泌蛋白差异调节的基因中有65个。在神经支配后,在Myoparr耗竭的骨骼肌中鉴定出的这65个基因中,我们集中于生长/分化因子5(GDF5)(一种肌肉萎缩的抑制剂)的表达增加。如磷酸化的Smad1 / 5/8水平升高所表明的,Myoparr的敲低​​导致失神经肌肉中活化的骨形态发生蛋白(BMP)信号传导。我们对Myoparr下游基因的详细评估还显示,Myoparr调节了成肌分化和肌肉萎缩之间的差异基因表达。这是第一个证明Myoparr在调节失神经肌肉中BMP信号传导中的体内作用的报道。因此,对BMP信号具有抑制活性的lncRNAs可能是骨骼肌萎缩症的假定治疗靶标。

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