首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Activity-dependent gene regulation in skeletal muscle is mediated by a histone deacetylase (HDAC)-Dach2-myogenin signal transduction cascade
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Activity-dependent gene regulation in skeletal muscle is mediated by a histone deacetylase (HDAC)-Dach2-myogenin signal transduction cascade

机译:骨骼肌中活动依赖的基因调节是由组蛋白脱乙酰基酶(HDAC)-Dach2-myogenin信号转导级联介导的

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Muscle activity contributes to muscle development and function largely by means of regulated gene expression. Many genes crucial to neuromuscular synapse formation, such as MUSK and nAChRs, are induced before muscle innervation or after muscle denervation, and this induction requires expression of the E-box binding, basic helix-loop-helix muscle-specific transcription factor, myogenin (Mgn). The mechanism by which muscle activity is coupled to gene expression is poorly defined. Here we report that inhibition of histone deacetylase (HDAC) activity attenuates the induction of activity-regulated genes in aneural myotubes and adult denervated muscle. The effect of HDAC inhibitors requires new protein synthesis, suggesting HDACs may regulate the expression of a Mgn transcriptional repressor. We identified Dach2 as a Mgn transcriptional repressor whose expression is dramatically reduced in an HDAC-dependent manner in developing aneural myotubes or adult denervated muscle. Dach2 overexpression in clenervated muscle suppressed Mgn, nAChR, and MuSK gene induction, whereas Dach2 knockdown induced Mgn gene expression in innervated muscle and relieved Mgn promoter inhibition by HDAC inhibitors. Thus, a HDAC-Dach2-myogenin signaling pathway has been identified to decode nerve activity and control muscle gene expression in developing and adult skeletal muscle.
机译:肌肉活动主要通过调节基因表达来促进肌肉发育和功能。许多对神经肌肉突触形成至关重要的基因(例如MUSK和nAChRs)在肌肉神经支配之前或在肌肉神经支配后被诱导,这种诱导需要表达E-box结合,基本的螺旋-环-螺旋肌肉特异性转录因子肌原蛋白( Mgn)。肌肉活动与基因表达耦合的机制尚不明确。在这里,我们报道抑制组蛋白脱乙酰基酶(HDAC)的活动会减弱对非神经肌管和成年神经支配的肌肉中活动调节基因的诱导。 HDAC抑制剂的作用需要新的蛋白质合成,这表明HDAC可能调节Mgn转录阻遏物的表达。我们确定Dach2为Mgn转录阻遏物,其表达在发育中的无肌肌管或成年神经支配的肌肉中以HDAC依赖性方式显着降低。 Dach2过度表达在肌肉发达的肌肉中抑制了Mgn,nAChR和MuSK基因的诱导,而Dach2敲低诱导了神经肌肉中Mgn的基因表达,并减轻了HDAC抑制剂对Mgn启动子的抑制。因此,已经确定了HDAC-Dach2-肌生成素信号传导途径,可以解码神经活动并控制发育中和成年骨骼肌中的肌肉基因表达。

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